CN211142451U - Multi-needle bar frame embroidery machine head - Google Patents

Multi-needle bar frame embroidery machine head Download PDF

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Publication number
CN211142451U
CN211142451U CN201921531091.6U CN201921531091U CN211142451U CN 211142451 U CN211142451 U CN 211142451U CN 201921531091 U CN201921531091 U CN 201921531091U CN 211142451 U CN211142451 U CN 211142451U
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China
Prior art keywords
needle bar
needle
driving
seat
frame
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CN201921531091.6U
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Chinese (zh)
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王立庆
陈信宝
宣东良
周伟
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Zhuji Maya Electric Appliance Machinery Co ltd
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Individual
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Abstract

The utility model provides a multi-needle bar frame embroidery machine head. It has solved current technical problem. This many needle bars frame embroidery machine aircraft nose, including the aircraft nose, the aircraft nose on be equipped with guide rail assembly, guide rail assembly on be equipped with at least two sets of needle bars frames, the needle bars frame in be equipped with the needle bar subassembly, the adjacent setting of needle bars frame, and form the accommodation space between the adjacent needle bars frame, just needle bars frame can be relative aircraft nose left and right sides reciprocating motion, the aircraft nose in be equipped with the needle bar actuating mechanism who drives the reciprocal lift of needle bar subassembly. The utility model has the advantages of simple structure, convenient combination and embroidering of different wires, etc.

Description

Multi-needle bar frame embroidery machine head
Technical Field
The utility model belongs to the technical field of the embroidery machine, especially, relate to a many needle bars frame embroidery machine aircraft nose.
Background
At present, there are single needle embroidery machines, double needle embroidery machines and even multi-needle embroidery machines, so-called single needle embroidery machine heads do not mean that only one needle rod is used for embroidering in an embroidery state, but mean that only one needle rod is used for embroidering in one embroidery machine head, and the double needle embroidery machines or multi-needle embroidery machines are used for embroidering in one embroidery machine head and have two or more needle rods at the same time. The existing double-needle or multi-needle embroidery machine needs to be provided with two needle bar frames and independently controlled machine heads if the independent control of the presser foot is realized, the cost is high, the load of the machine frame is increased by arranging a plurality of machine heads, and in addition, the machine is very inconvenient when the combined embroidery of different wires is required.
For example, chinese patent document discloses an embroidery machine [ application No.: 201810142641.9] comprises an embroidery machine head, a shuttle box, a thread-clasping device and a thread-cutting device, wherein the shuttle box is internally provided with a rotating shuttle, the thread-clasping device comprises a thread-clasping piece movably arranged in the shuttle box and used for clasping the rotating shuttle, the thread-cutting device comprises a fixed knife and a movable knife moving relative to the fixed knife, the thread-cutting device is characterized in that the thread-clasping device also comprises a driving rotating shaft rotatably arranged on the shuttle box, the driving rotating shaft is simultaneously connected with at least two thread-clasping pieces, the thread-cutting device comprises a driving main connecting rod and two sub connecting rods, the driving main connecting rod is simultaneously provided with at least two sub connecting rods, each sub connecting rod respectively drives the movable knife to move, the driving rotating shaft is driven by a first driver and drives at least two thread-clasping pieces to work, and the driving main connecting rod is driven by a second.
The solution described above improves to some extent some of the problems of the prior art, but it also has at least the following drawbacks: the cost is high, the load of the frame is large, and the combined embroidering of different wires is very inconvenient.
Disclosure of Invention
The utility model aims at the above problem, provide a simple structure, the many needle bars frame embroidery machine aircraft nose of being convenient for different wire rod combinations are embroidered.
In order to achieve the above purpose, the utility model adopts the following technical proposal: this many needle bars frame embroidery machine aircraft nose, including the aircraft nose, the aircraft nose on be equipped with guide rail assembly, guide rail assembly on be equipped with at least two sets of needle bars frames, the needle bars frame in be equipped with the needle bar subassembly, the adjacent setting of needle bars frame, and form the accommodation space between the adjacent needle bars frame, just needle bars frame can be relative aircraft nose left and right sides reciprocating motion, the aircraft nose in be equipped with the needle bar actuating mechanism who drives the reciprocal lift of needle bar subassembly. The single-head multi-needle bar frame structure saves the installation space, can realize that a single head is matched with and drives a plurality of needle bar frames, and can realize multi-device combined embroidery of the single head by arranging different embroidery threads on different needle bar frames; in addition, three or more than three devices such as a rope embroidery machine head, a bead scattering machine head, a sequin machine head, a laser machine head and an ink jet machine head can be arranged in the accommodating space to carry out multi-combination special embroidery, and the needle rod assembly on the needle rod frame can be provided with any different needle number according to the requirement, so that the application range is wider.
In foretell many needle bar framves embroidery machine aircraft nose, the guide rail subassembly including link firmly the slide rail on the aircraft nose, the needle bar frame on be equipped with the slide with the corresponding setting of slide rail, the needle bar frame link firmly on the slide just the needle bar frame pass through the slide along slide rail axial reciprocating motion, needle bar frame and aircraft nose between still be equipped with the slip locating component. The needle bar frame can slide relative to the machine head through the sliding rail and the sliding seat, so that the machine head drives the needle bar assemblies with different embroidery ropes to carry out embroidery.
In the machine head of the multi-needle-bar frame embroidery machine, the sliding positioning assembly comprises a positioning seat arranged on the machine head, a strip-shaped positioning guide rail is arranged on the needle bar frame, a positioning bayonet is arranged on the positioning seat, and the strip-shaped positioning guide rail is positioned in the positioning bayonet. The needle bar frame can be prevented from being separated from the machine head when sliding through the positioning bayonet and the strip-shaped positioning guide rail, and the structure is more stable.
In the multi-needle bar frame embroidery machine head, the needle bar assembly comprises a plurality of needle bar bodies and a plurality of presser feet, the needle bar bodies penetrate through the shockproof pads on the needle bar frame, a needle bar limiting assembly is arranged between the needle bar bodies and the shockproof pads, the needle bar driving mechanisms in the machine head are in a group, and the needle bar frame is linked with the needle bar driving mechanisms in the machine head after moving left and right in a reciprocating manner. Therefore, the needle bar frame can enable the needle bar driving mechanism on the machine head to drive the needle bar components of different needle bar frames after the needle bar frames are transversely moved.
In the multi-needle-bar-frame embroidery machine head, the needle bar limiting assembly comprises a first limiting seat arranged below the shockproof pad, the first limiting seat is fixedly connected with the needle bar body, a second limiting seat fixedly connected with the needle bar body is arranged below the first limiting seat, and the presser foot is fixedly connected with a presser foot driving pin.
In the above-mentioned multi-needle bar frame embroidery machine head, the needle bar driving mechanism includes a presser foot driving assembly and a needle bar driving assembly arranged in the machine head.
In foretell many needle bars frame embroidery machine aircraft nose, needle bar drive assembly include the eccentric cam that links to each other with the drive main shaft in the aircraft nose, eccentric cam on even have first connecting rod, the other end of first connecting rod articulate in the middle part of second connecting rod, the both ends of second connecting rod articulate respectively has connecting rod round pin axle and third connecting rod, the other end of third connecting rod articulate has needle bar drive seat, needle bar drive seat with be equipped with needle bar drive bayonet socket, just needle bar drive seat cover establish the locating lever in the aircraft nose in internal and can be along the axial activity of the locating lever body.
In the multi-needle-bar embroidery machine head, the second limiting seat extends to form a clamping part towards one side of the needle bar driving seat, and the clamping part is positioned in the needle bar driving clamping opening. The needle bar body is driven through the needle bar driving bayonet and the clamping portion, and transmission is stable.
In the multi-needle bar frame embroidery machine head, the presser foot driving assembly comprises a fourth connecting rod, one end of the fourth connecting rod is hinged to the needle bar driving seat, the other end of the fourth connecting rod is hinged to the middle of the presser foot driving connecting rod, two ends of the presser foot driving connecting rod are respectively hinged to a presser foot driving connecting rod pin and a fifth connecting rod, the other end of the fifth connecting rod is hinged to the presser foot driving seat, the presser foot driving seat is sleeved on the positioning rod body, a presser foot driving plate is arranged on one side, facing the presser foot driving pin, of the presser foot driving seat, and the presser foot driving pin and the presser foot driving plate move relatively in the transverse direction and at least partially coincide in the projection in the vertical. Therefore, after the sliding seat traverses, the presser foot driving pins of the needle bar assemblies on different needle bar frames can be successfully linked with the presser foot driving plate in the machine head.
In the above-mentioned embroidery machine head with multiple needle bar frames, the clamping portion can reciprocate relative to the needle bar driving bayonet in the left-right direction, and when the clamping portion is located at the needle bar driving bayonet, the projection of the needle bar driving bayonet in the vertical direction is at least partially overlapped with the projection of the clamping portion in the vertical direction. Therefore, after the sliding seat moves transversely, the clamping parts of the needle bar components on different needle bar frames can be successfully linked with the needle bar driving bayonets in the machine head.
Compared with the prior art, the multi-needle-bar embroidery machine head has the advantages that: the multi-needle bar frame structure has the advantages that the structure is simple, the design is reasonable, the multi-needle bar frame structure saves the installation space, the single machine head can be matched with and drive the multiple needle bar frames, different embroidery threads are arranged on the different needle bar frames, the multi-device combined embroidery of the single machine head can be realized, the load of a machine frame is effectively reduced, and the cost of the machine head is reduced.
Drawings
Fig. 1 is a schematic view of the needle bar frame provided by the present invention after being separated from the driving unit;
fig. 2 is a schematic view of the needle bar frame and the driving unit provided by the present invention after being combined;
FIG. 3 is a schematic structural view of the needle bar assembly provided by the present invention;
FIG. 4 is a schematic structural view of the inner side of the handpiece provided by the present invention;
FIG. 5 is a schematic view of the other side of the needle bar frame provided by the present invention;
fig. 6 is a schematic structural view of a needle bar driving mechanism provided by the present invention;
fig. 7 is a schematic structural view of the accommodating space with the auxiliary device added therein according to the present invention;
in the figure, a needle bar frame 1, a containing space 2, a guide rail component 3, a machine head 4, a needle bar component 5, a needle bar driving mechanism 6, a slide rail 7, a slide seat 8, a positioning seat 9, a strip-shaped positioning guide rail 10, a positioning bayonet 11, a needle bar body 12, a pressure foot 13, a vibration-proof pad 14, a needle bar limiting component 15, a first limiting seat 16, a second limiting seat 17, an eccentric cam 18, a first connecting rod 19, a second connecting rod 20, a connecting rod pin shaft 21, a third connecting rod 22, a needle bar driving seat 23, a needle bar driving bayonet 24, a positioning rod body 25, a clamping part 26, a fourth connecting rod 27, a pressure foot driving connecting rod 28, a pressure foot driving connecting rod pin 29, a fifth connecting rod 30, a pressure foot driving seat 31, a pressure foot 32, a pressure foot.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings and specific embodiments.
As shown in fig. 1-7, the multi-needle bar frame embroidery machine head comprises a machine head 4, a guide rail assembly 3 is arranged on the machine head 4, at least two needle bar frames 1 are arranged on the guide rail assembly 3, needle bar assemblies 5 are arranged in the needle bar frames 1, the needle bar frames 1 are arranged adjacently, a containing space 2 is formed between the adjacent needle bar frames 1, the needle bar frames 1 can move left and right in a reciprocating manner relative to the machine head 4, and a needle bar driving mechanism 6 for driving the needle bar assemblies 5 to lift in a reciprocating manner is arranged in the machine head 4.
Through accommodation space 2 be used for placing third set or even fourth set needle bar frame 1, just so can optimize space utilization, installation space has been practiced thrift to single aircraft nose 4 many needle bar frame 1 structure, can realize a plurality of needle bar frame 1 of single aircraft nose 4 cooperation drive, through set up different embroidery threads on needle bar frame 1 of difference, can realize the multi-device combination embroidery of single 4 heads and do, in addition, can also install rope embroidery aircraft nose in accommodation space 2, the pearl aircraft nose looses, the gold sheet aircraft nose, the laser aircraft nose, three auxiliary device a more than three such as ink jet aircraft nose carries out the multi-unit combination special embroidery work, also can be as required be in needle bar subassembly 5 with needle bar frame 1 and be setting up arbitrary different needle counts, and application scope is wider.
Preferably, the guide rail assembly 3 comprises a slide rail 7 fixedly connected to the machine head 4, a slide seat 8 arranged corresponding to the slide rail 7 is arranged on the needle bar frame 1, the needle bar frame 1 is fixedly connected to the slide seat 8 and the needle bar frame 1 axially reciprocates along the slide rail 7 through the slide seat 8, a sliding positioning assembly is further arranged between the needle bar frame 1 and the machine head 4, the needle bar frame 1 can slide relative to the machine head 4 through the slide rail 7 and the slide seat 8, and the machine head 4 drives the needle bar assembly 5 with different embroidery ropes to embroider.
The sliding positioning assembly comprises a positioning seat 9 arranged on the machine head 4, a bar-shaped positioning guide rail 10 is arranged on the needle bar frame 1, a positioning bayonet 11 is arranged on the positioning seat 9, the bar-shaped positioning guide rail 10 is positioned in the positioning bayonet 11, the needle bar frame 1 can be prevented from being separated from the machine head 4 when sliding through the positioning bayonet 11 and the bar-shaped positioning guide rail 10, and the structure is more stable.
Further, the needle bar assembly 5 comprises a plurality of needle bar bodies 12 and a plurality of presser feet 13, the needle bar bodies 12 penetrate through shock-proof pads 14 arranged on the needle bar frame 1, a needle bar limiting assembly 15 is arranged between the needle bar bodies 12 and the shock-proof pads 14, the needle bar driving mechanisms 6 in the machine head 4 form a group, the needle bar frame 1 is in linkage with the needle bar driving mechanisms 6 in the machine head 4 after moving left and right in a reciprocating mode, and therefore the needle bar frame 1 can enable the needle bar driving mechanisms 6 on the machine head 4 to drive the needle bar assemblies 5 of different needle bar frames 1 after moving transversely. The needle bar limiting component 15 comprises a first limiting seat 16 arranged below the shockproof pad 14, the first limiting seat 16 is fixedly connected with the needle bar body 12, a second limiting seat 17 fixedly connected with the needle bar body 12 is arranged below the first limiting seat 16, and a presser foot driving pin 32 is fixedly connected to the presser foot 13.
Further, the needle bar drive mechanism 6 includes a presser foot drive assembly and a needle bar drive assembly provided in the head 4; the needle rod driving assembly comprises an eccentric cam 18 connected with a driving main shaft in the machine head 4, a first connecting rod 19 is connected onto the eccentric cam 18, the other end of the first connecting rod 19 is hinged to the middle of a second connecting rod 20, two ends of the second connecting rod 20 are respectively hinged to a connecting rod pin shaft 21 and a third connecting rod 22, the other end of the third connecting rod 22 is hinged to a needle rod driving seat 23, the needle rod driving seat 23 and a positioning rod body 25 arranged on the needle rod driving bayonet 24 are arranged on the needle rod driving seat 23 in a sleeved mode, and the needle rod driving seat 23 can move axially along the positioning rod body 25; spacing seat 17 of second has joint portion 26 towards one side extension of needle bar drive seat 23, and joint portion 26 is located needle bar drive bayonet 24, realizes the drive of the needle bar body 12 through needle bar drive bayonet 24 and joint portion 26, and the transmission is stable.
The presser foot driving assembly comprises a fourth connecting rod 27 with one end hinged to the needle bar driving seat 23, the other end of the fourth connecting rod 27 is hinged to the middle of the presser foot driving connecting rod 28, two ends of the presser foot driving connecting rod 28 are respectively hinged to a presser foot driving connecting rod pin 29 and a fifth connecting rod 30, the other end of the fifth connecting rod 30 is hinged to a presser foot driving seat 31, the presser foot driving seat 31 is sleeved on the positioning rod body 25, a presser foot driving plate 33 is arranged on one side of the presser foot driving seat 31 facing to the presser foot driving pin 32, the presser foot driving pin 32 and the presser foot driving plate 33 move relatively in the transverse direction, and the projections in the vertical direction are at least partially overlapped, so that after the sliding seat 8 moves transversely, the presser foot driving pins 32 of the needle bar assemblies 5 on different needle bar.
In addition, the clamping portion 26 can reciprocate relative to the needle bar driving bayonet 24 in the left-right direction, and when the clamping portion 26 is located at the needle bar driving bayonet 24, and the projection of the needle bar driving bayonet 24 in the vertical direction at least partially coincides with the projection of the clamping portion 26 in the vertical direction, therefore, after the sliding seat 8 traverses, the clamping portions 26 of the needle bar assemblies 5 on different needle bar frames 1 can be successfully linked with the needle bar driving bayonet 24 in the machine head 4.
The specific embodiments described herein are merely illustrative of the spirit of the invention. Various modifications, additions and substitutions for the specific embodiments described herein may be made by those skilled in the art without departing from the spirit of the invention or exceeding the scope of the invention as defined in the accompanying claims.
Although terms such as the needle bar frame 1, the accommodating space 2, the guide rail assembly 3, the head 4, the needle bar assembly 5, the needle bar driving mechanism 6, the slide rail 7, the slider 8, the positioning seat 9, the bar-shaped positioning guide rail 10, the positioning bayonet 11, the needle bar body 12, the presser foot 13, the vibration-proof pad 14, the needle bar spacing assembly 15, the first spacing seat 16, the second spacing seat 17, the eccentric cam 18, the first link 19, the second link 20, the link pin 21, the third link 22, the needle bar driving seat 23, the needle bar driving bayonet 24, the positioning rod body 25, the snap-in portion 26, the fourth link 27, the presser foot driving link 28, the presser foot driving link pin 29, the fifth link 30, the presser foot driving seat 31, the presser foot driving pin 32, the presser foot driving plate 33, the auxiliary device a, and the like are used more frequently, the possibility of using other. These terms are used merely to more conveniently describe and explain the nature of the present invention; they are to be construed in a manner that is inconsistent with the spirit of the invention.

Claims (10)

1. The utility model provides a many needle bars frame embroidery machine aircraft nose, includes aircraft nose (4), its characterized in that, aircraft nose (4) on be equipped with guide rail set spare (3), guide rail set spare (3) on be equipped with at least two sets of needle bars frame (1), needle bars frame (1) in be equipped with needle bar subassembly (5), needle bars frame (1) adjacent setting, and form accommodation space (2) between adjacent needle bars frame (1), just needle bars frame (1) can be relative aircraft nose (4) about reciprocating motion, aircraft nose (4) in be equipped with needle bar actuating mechanism (6) that drive needle bar subassembly (5) reciprocated.
2. The handpiece of the multi-needle bar frame embroidery machine according to claim 1, wherein the guide rail assembly (3) comprises a slide rail (7) fixedly connected to the handpiece (4), the needle bar frame (1) is provided with a slide seat (8) correspondingly arranged to the slide rail (7), the needle bar frame (1) is fixedly connected to the slide seat (8) and the needle bar frame (1) axially reciprocates along the slide rail (7) through the slide seat (8), and a sliding positioning assembly is further arranged between the needle bar frame (1) and the handpiece (4).
3. The handpiece of the multi-needle bar frame embroidery machine according to claim 2, wherein the sliding positioning assembly comprises a positioning seat (9) arranged on the handpiece (4), the needle bar frame (1) is provided with a strip-shaped positioning guide rail (10), the positioning seat (9) is provided with a positioning bayonet (11), and the strip-shaped positioning guide rail (10) is positioned in the positioning bayonet (11).
4. The machine head of the multi-needle bar frame embroidery machine according to claim 1, characterized in that the needle bar assembly (5) comprises a plurality of needle bar bodies (12) and a plurality of presser feet (13), the needle bar bodies (12) are arranged on shock pads (14) on the needle bar frame (1) in a penetrating manner, a needle bar limiting assembly (15) is arranged between the needle bar bodies (12) and the shock pads (14), the needle bar driving mechanisms (6) in the machine head (4) form a group, and the needle bar frame (1) is linked with the needle bar driving mechanism (6) in the machine head (4) after reciprocating left and right.
5. The handpiece of the multi-needle-bar embroidery machine according to claim 4, wherein the needle bar limiting assembly (15) comprises a first limiting seat (16) arranged below the shockproof pad (14), the first limiting seat (16) is fixedly connected with the needle bar body (12), a second limiting seat (17) fixedly connected with the needle bar body (12) is arranged below the first limiting seat (16), and the presser foot (13) is fixedly connected with a presser foot driving pin (32).
6. The head of a multi-needle bar frame embroidery machine according to claim 5, characterized in that said needle bar driving mechanism (6) comprises a presser foot driving assembly and a needle bar driving assembly provided in the head (4).
7. The machine head of the multi-needle bar frame embroidery machine according to claim 6, characterized in that the needle bar driving assembly comprises an eccentric cam (18) connected with a driving spindle in the machine head (4), the eccentric cam (18) is connected with a first connecting rod (19), the other end of the first connecting rod (19) is hinged to the middle part of a second connecting rod (20), two ends of the second connecting rod (20) are respectively hinged with a connecting rod pin shaft (21) and a third connecting rod (22), the other end of the third connecting rod (22) is hinged with a needle bar driving seat (23), the needle bar driving seat (23) is provided with a needle bar driving bayonet (24), and the needle bar driving seat (23) is sleeved in a positioning rod body (25) in the machine head (4) and can axially move along the positioning rod body (25).
8. The head of a multi-needle bar frame embroidery machine as claimed in claim 7, characterized in that said second stopper seat (17) has a catching portion (26) extending from a side thereof facing said needle bar driving seat (23), said catching portion (26) being located in said needle bar driving bayonet (24).
9. The head of a multi-needle bar embroidery machine according to claim 8, wherein said presser foot drive assembly includes a fourth link (27) having one end hinged to the needle bar drive base (23), the other end of the fourth connecting rod (27) is hinged at the middle part of the presser foot driving connecting rod (28), two ends of the presser foot driving connecting rod (28) are respectively hinged with a presser foot driving connecting rod pin (29) and a fifth connecting rod (30), the other end of the fifth connecting rod (30) is hinged with a pressure foot driving seat (31), the pressure foot driving seat (31) is sleeved on the positioning rod body (25), and a presser foot drive plate (33) is arranged on one side of the presser foot drive seat (31) facing the presser foot drive pin (32), the presser foot drive pin (32) and the presser foot drive plate (33) move relatively in the transverse direction, and the projections in the vertical direction are at least partially overlapped.
10. The multiple-needle-bar embroidery machine head according to claim 8, wherein said catching portion (26) is reciprocally movable in the left-right direction with respect to the needle bar driving catching openings (24), and when the catching portion (26) is located at the needle bar driving catching openings (24), a projection of the needle bar driving catching openings (24) in the vertical direction at least partially coincides with a projection of the catching portion (26) in the vertical direction.
CN201921531091.6U 2019-09-16 2019-09-16 Multi-needle bar frame embroidery machine head Active CN211142451U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921531091.6U CN211142451U (en) 2019-09-16 2019-09-16 Multi-needle bar frame embroidery machine head

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Application Number Priority Date Filing Date Title
CN201921531091.6U CN211142451U (en) 2019-09-16 2019-09-16 Multi-needle bar frame embroidery machine head

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112663234A (en) * 2020-12-23 2021-04-16 浙江信胜科技股份有限公司 Embroidery machine head and embroidery machine
CN112813591A (en) * 2021-02-10 2021-05-18 汉羽科技(广东)有限公司 Follow-up presser foot mechanism and tailor machine
CN112941751A (en) * 2021-01-28 2021-06-11 诸暨市驰龙机械科技有限公司 Embroidery machine bearing fine adjustment slide rail device

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112663234A (en) * 2020-12-23 2021-04-16 浙江信胜科技股份有限公司 Embroidery machine head and embroidery machine
CN112941751A (en) * 2021-01-28 2021-06-11 诸暨市驰龙机械科技有限公司 Embroidery machine bearing fine adjustment slide rail device
CN112813591A (en) * 2021-02-10 2021-05-18 汉羽科技(广东)有限公司 Follow-up presser foot mechanism and tailor machine

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GR01 Patent grant
GR01 Patent grant
EE01 Entry into force of recordation of patent licensing contract
EE01 Entry into force of recordation of patent licensing contract

Assignee: ZHEJIANG MAYA ELECTROMECHANICAL TECHNOLOGY Co.,Ltd.

Assignor: Zhao Hai

Contract record no.: X2021330000512

Denomination of utility model: Multi needle bar frame embroidery machine head

Granted publication date: 20200731

License type: Common License

Record date: 20211020

Assignee: ZHUJI MAYA ELECTRIC APPLIANCE MACHINERY Co.,Ltd.

Assignor: Zhao Hai

Contract record no.: X2021330000523

Denomination of utility model: Multi needle bar frame embroidery machine head

Granted publication date: 20200731

License type: Common License

Record date: 20211020

TR01 Transfer of patent right
TR01 Transfer of patent right

Effective date of registration: 20221109

Address after: 311,800 No. 9, Jinjin Road, Jianglong Industrial Park, Jiyang Street, Zhuji City, Shaoxing City, Zhejiang Province

Patentee after: ZHUJI MAYA ELECTRIC APPLIANCE MACHINERY Co.,Ltd.

Address before: 311800 no.2-1, Jindong Road, Zhaojia second village, Zhaojia Town, Zhuji City, Shaoxing City, Zhejiang Province

Patentee before: Zhao Hai