CN114411350A - Quilting strip, embroidering and embroidering all-in-one machine capable of achieving adjusting function - Google Patents

Quilting strip, embroidering and embroidering all-in-one machine capable of achieving adjusting function Download PDF

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Publication number
CN114411350A
CN114411350A CN202210038027.4A CN202210038027A CN114411350A CN 114411350 A CN114411350 A CN 114411350A CN 202210038027 A CN202210038027 A CN 202210038027A CN 114411350 A CN114411350 A CN 114411350A
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CN
China
Prior art keywords
needle bar
speed machine
shaft
needle
embroidering
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Withdrawn
Application number
CN202210038027.4A
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Chinese (zh)
Inventor
洪志伟
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Individual
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Individual
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Filing date
Publication date
Application filed by Individual filed Critical Individual
Priority to CN202210038027.4A priority Critical patent/CN114411350A/en
Publication of CN114411350A publication Critical patent/CN114411350A/en
Withdrawn legal-status Critical Current

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    • DTEXTILES; PAPER
    • D05SEWING; EMBROIDERING; TUFTING
    • D05CEMBROIDERING; TUFTING
    • D05C13/00Auxiliary devices incorporated in embroidering machines, not otherwise provided for; Ancillary apparatus for use with embroidering machines
    • DTEXTILES; PAPER
    • D05SEWING; EMBROIDERING; TUFTING
    • D05CEMBROIDERING; TUFTING
    • D05C11/00Devices for guiding, feeding, handling, or treating the threads in embroidering machines; Machine needles; Operating or control mechanisms therefor
    • DTEXTILES; PAPER
    • D05SEWING; EMBROIDERING; TUFTING
    • D05CEMBROIDERING; TUFTING
    • D05C11/00Devices for guiding, feeding, handling, or treating the threads in embroidering machines; Machine needles; Operating or control mechanisms therefor
    • D05C11/02Machine needles
    • D05C11/04Arrangements for fastening or inserting in bars or carriers
    • DTEXTILES; PAPER
    • D05SEWING; EMBROIDERING; TUFTING
    • D05CEMBROIDERING; TUFTING
    • D05C11/00Devices for guiding, feeding, handling, or treating the threads in embroidering machines; Machine needles; Operating or control mechanisms therefor
    • D05C11/18Shuttles ; Shuttle holders; Shuttle driving arrangements

Abstract

The invention discloses a quilting strip, embroidering and embroidering integrated machine capable of realizing an adjusting function, which comprises a frame part, a shuttle bed part, a gantry I-shaped girder, a nose part and a needle bar frame part, wherein the shuttle bed part is connected to the lower part of the frame part in a sliding manner, the gantry I-shaped girder is arranged on the upper part of the frame part, the nose part is fixedly connected to the front side of the gantry I-shaped girder, and the needle bar frame part is connected with the nose part, wherein: the shuttle race part comprises a shuttle race mounting plate, a lower shaft parallel to the shuttle race mounting plate and a plurality of shuttle race boxes arranged on the lower shaft in a penetrating way; the head part comprises a high-speed machine shell part, a driver assembly, a take-up shaft and a high-speed machine take-up rod assembly; the needle bar frame part comprises a needle bar frame fixed guide rail, a needle bar frame component and a color changing shaft, wherein the needle bar frame fixed guide rail, the needle bar frame component and the color changing shaft are respectively positioned at the upper end and the lower end and are parallel to each other. The invention has strong practicability and functionality and can be widely applied to the technical field of spinning.

Description

Quilting strip, embroidering and embroidering all-in-one machine capable of achieving adjusting function
Technical Field
The invention relates to the field of textiles, in particular to a quilting strip, embroidering and embroidering integrated machine capable of realizing an adjusting function.
Background
The problem that the embroidery machine in the prior art has in the aspect of the function of realizing is that the multidimension can't be adjusted, the problem that exists when the in-process of operating on specific breadth of cloth can't realize the adaptation function of the cloth of different specifications, and in the in-process of concrete implementation because the restriction of equipment structure, lead to its can't reach the purpose of arbitrary regulation specification at the in-process of concrete implementation, can't realize the function that makes the breadth of embroidery infinitely prolong at the in-process of work, have certain limitation, the development of textile technology has been influenced.
Disclosure of Invention
Aiming at the problems, the invention provides a quilting strip, embroidering and embroidering integrated machine capable of realizing multi-dimensional adjustment.
The technical scheme provided by the invention is as follows:
the utility model provides a can realize adjusting function sew with long stitches strip, embroidery, sew with long stitches embroidery all-in-one, includes frame portion, sliding connection at the shuttle bed portion of frame portion lower part, locate gantry I shape girder on frame portion upper portion, rigid coupling at the aircraft nose portion of gantry I shape girder front side and the needle bar frame portion of being connected with the aircraft nose portion, wherein:
the shuttle race part comprises a shuttle race mounting plate, a lower shaft parallel to the shuttle race mounting plate and a plurality of shuttle race boxes arranged on the lower shaft in a penetrating way;
the head part comprises a high-speed machine shell part, a driver assembly, a take-up shaft and a high-speed machine take-up rod assembly;
the needle bar frame part comprises a needle bar frame fixed guide rail, a needle bar frame component and a color changing shaft, wherein the needle bar frame fixed guide rail, the needle bar frame component and the color changing shaft are respectively positioned at the upper end and the lower end and are parallel to each other.
Furthermore, the shuttle race box is connected to the shuttle race mounting plate in a sliding manner, and a needle plate is arranged at the upper part of the shuttle race box;
the needle bar frame assembly comprises an embroidery needle arranged at the lower part, and an embroidery needle hole corresponding to the embroidery needle is formed in the needle plate;
the thread take-up lever assembly comprises a plurality of thread take-up levers fixedly connected to the thread take-up shaft at intervals, and the thread take-up levers penetrate through the needle bar frame assembly through the free ends of the thread take-up levers; the color changing shaft is horizontally connected with the needle bar frame assembly; and a first fork type take-up lever with one end in contact with the lower part of the take-up shaft is arranged on the casing part of the high-speed machine.
Furthermore, a high-speed machine shell part is provided with a high-speed machine main driving shaft, an upper shaft and a lower shaft which are positioned on the high-speed machine shell part are both driven by a servo motor, and the upper shaft drives a fork type take-up lever to rotate;
the driver assembly comprises a driver, a driver fixing plate, a driver sliding block and a driver fixing pin connected with the needle bar frame assembly;
the needle bar frame assembly comprises a high-speed machine needle bar arranged inside and an iron bar spring sleeved on the high-speed machine needle bar, and the embroidery needle is connected with the high-speed machine needle bar;
the needle bar frame component is connected with the high-speed machine shell in a sliding mode.
Furthermore, a threading hole is formed in the free end of the fork type thread take-up lever I, and a guide groove for the thread take-up lever to move up and down is formed in the needle bar frame assembly;
the upper part of the shuttle race mounting plate is provided with a shuttle race support connected with the needle plate, and the shuttle race support is clamped on the shuttle race mounting plate through the lower end of the shuttle race support;
the shuttle race box comprises a first bevel gear and a second bevel gear which are meshed with each other, and the first bevel gear penetrates through the lower shaft; the shuttle race box further comprises a rotating shuttle shell, a rotating shuttle inner container, a rotating shuttle outer sheet and a rotating shuttle shaft which is arranged in a penetrating mode, wherein the rotating shuttle shaft horizontally penetrates through the shuttle race support.
Furthermore, the driver sliding block is arranged on the driver fixing plate in a penetrating mode through a sliding pin, and a moving groove for the reciprocating movement of the sliding pin is formed in one side, which is in contact with the driver sliding block, of the driver fixing plate;
a high-speed machine driving seat is movably arranged on the driving shaft of the high-speed machine in a penetrating way, and the high-speed machine driving seat is hinged with the high-speed machine shell part through a three-hole connecting rod; a needle bar transmission cam and a nylon cam are arranged in the high-speed machine shell part and are positioned on the upper shaft in a penetrating way; the high-speed machine shell is also provided with a fork type take-up lever II, the fork type take-up lever II and the fork type take-up lever I are connected in a penetrating way through a high-speed machine take-up driving lever pin, and the take-up lever transmission lever pin is movably arranged on the high-speed machine shell in a penetrating way; the fork type take-up lever two-way is eccentrically connected to the nylon cam through one end of the fork type take-up lever two-way.
Furthermore, an iron rod transmission cam is further arranged on the upper shaft and positioned on the other side of the nylon cam;
the gantry I-shaped girder is of a square tubular structure and is connected with the upper end of the high-speed machine shell, a preset distance is formed between the embroidery needle and the needle plate, and the embroidery needle is positioned at the upper part of the needle plate;
the frame part comprises a frame, a moving groove and a guide rail trolley, wherein the moving groove is horizontally formed in two ends of the frame, the guide rail trolley is connected to the clamping groove in a sliding mode, and the guide rail trolley is connected with the cloth clamping rail through a frame fixing plate.
Furthermore, a positioning block is arranged on the frame fixing plate in a penetrating manner through a positioning pin, and the positioning pin is vertically connected with the positioning block; the two guide rail trolleys are distributed and connected at the two ends of the frame fixing plate;
the front side and the rear side of the frame are respectively provided with a guide rail, the guide rails are used for the guide rail trolley to slide back and forth, and the guide rail trolley is of a block structure with a groove at the lower part; the positioning pin is positioned in the middle of the guide rail trolley.
Furthermore, the embroidery needle is connected with the high-speed machine shell part through a high-speed machine needle clamp; and a presser foot is arranged at the lower end of the casing part of the high-speed machine.
Compared with the prior art, the invention has the advantages that:
by adopting the combined structure with the gantry I-shaped girder, the frame part, the shuttle bed part, the head part and the needle bar frame part, the cloth width can be adjusted, and the adjustment function of dimension is convenient for a user, so that the cloth width adjusting device is high in practicability and functionality.
Drawings
FIG. 1 is an external structural view of an embodiment of the present invention;
FIG. 2 is a structural diagram of a gantry I-beam in an embodiment of the invention;
FIG. 3 is a first structural diagram of a high-speed housing according to an embodiment of the invention;
FIG. 4 is a second structural diagram of the high-speed housing according to the embodiment of the invention;
FIG. 5 is a block diagram of a head unit in an embodiment of the present invention;
FIG. 6 is an enlarged view of portion A of FIG. 5;
FIG. 7 is an enlarged view of portion B of FIG. 5;
fig. 8 is a structural view of a needle bar frame portion in the embodiment of the invention;
FIG. 9 is an enlarged view of portion C of FIG. 8;
FIG. 10 is a connection diagram of the high-speed casing part according to the embodiment of the invention;
FIG. 11 is an enlarged view of section D of FIG. 10;
FIG. 12 is a connecting structure diagram of the shuttle bed portion;
fig. 13 is an enlarged view of a portion E of fig. 12;
FIG. 14 is a connecting structure diagram of a shuttle bed mounting plate in the embodiment of the present invention;
FIG. 15 is an enlarged view of section F of FIG. 14;
FIG. 16 is a structural view of a frame portion in the embodiment of the invention;
fig. 17 is an enlarged view of a portion G in fig. 16.
Detailed Description
The present invention is described in further detail below with reference to figures 1-17.
The utility model provides a can realize adjusting function sew with long stitches strip, embroidery, sew with long stitches embroidery all-in-one, includes framework 1, sliding connection shuttle bed portion 2 in framework 1 lower part, locates gantry I shape girder 3 on framework 1 upper portion, rigid coupling at the aircraft nose portion 4 of gantry I shape girder 3 front side and with the needle bar frame portion 5 that aircraft nose portion 4 is connected, wherein:
the shuttle bed part 2 comprises a shuttle bed mounting plate 21, a lower shaft 6 parallel to the shuttle bed mounting plate 21 and a plurality of shuttle bed boxes 22 arranged on the lower shaft 6 in a penetrating way;
the nose portion 4 includes a high-speed machine casing portion 41, a driver assembly 42, a take-up shaft 43, and a high-speed machine take-up shaft assembly 44;
the needle bar frame part 5 includes a needle bar frame fixing guide 51, a needle bar frame assembly 52 and a color changing shaft 53 penetrating the needle bar frame assembly 52, which are respectively positioned at the upper and lower ends and are parallel to each other.
In the process of processing the cloth by using the device, the shuttle bed part 2 can realize reciprocating motion in the horizontal direction, and the gantry I-shaped girder 3 can realize the purpose of fixing the needle bar frame part 5 so as to ensure the normal work of the equipment; on the basis, the adopted nose part 4 moves up and down so as to be matched with the shuttle bed part 2 together, and the weaving function is realized.
The shuttle bed box 22 is connected on the shuttle bed mounting plate 21 in a sliding way, and the upper part of the shuttle bed box 22 is provided with a needle plate 23;
the needle bar frame component 52 comprises an embroidery needle 54 arranged at the lower part, and an embroidery needle hole corresponding to the embroidery needle 54 is arranged on the needle plate 23;
the thread take-up lever assembly 44 comprises a plurality of thread take-up levers 441 fixedly connected to the thread take-up shaft 43 at intervals, and the thread take-up levers 441 penetrate through the needle bar frame assembly 52 through free ends thereof; the color changing shaft 53 is horizontally connected with the needle bar frame component 52; the high-speed machine shell part 41 is provided with a fork type take-up lever 45 with one end contacting the lower part of the take-up shaft 43.
The high-speed machine shell part 41 is provided with a high-speed machine active shaft 46, an upper shaft 7 and a lower shaft 6 which are positioned on the high-speed machine shell part 41 are both driven by a servo motor, and the upper shaft 7 drives a fork type take-up lever I45 to rotate;
the driver assembly 42 includes a driver 421, a driver fixing plate 422, a driver slider 423, and a driver fixing pin 424 connected to the needle bar holder assembly 52;
the needle bar frame component 52 comprises a high-speed machine needle bar 521 arranged inside and an iron bar spring 522 sleeved on the high-speed machine needle bar 521, and the embroidery needle 54 is connected with the high-speed machine needle bar 521;
the needle bar housing assembly 52 is slidably connected to the high speed housing portion 41.
The free end of the fork type take-up lever I45 is provided with a threading hole, and the needle bar frame component 52 is provided with a guide groove for the fork type take-up lever I45 to move up and down;
the upper part of the shuttle bed mounting plate 21 is provided with a shuttle bed support 211 connected with the needle plate 23, and the shuttle bed support 211 is clamped on the shuttle bed mounting plate 21 through the lower end thereof;
the shuttle box 22 comprises a first bevel gear 221 and a second bevel gear 222 which are meshed with each other, and the first bevel gear 221 is arranged on the lower shaft 6 in a penetrating way; the shuttle box 22 further comprises a rotating shuttle housing 223, a rotating shuttle inner container 224, a rotating shuttle outer gripper 225 and a rotating shuttle shaft 226 passing through, wherein the rotating shuttle shaft 226 horizontally passes through the shuttle seat 211.
The driver sliding block 423 is arranged on the driver fixing plate 422 in a penetrating way through a sliding pin, and one side of the driver fixing plate 422, which is in contact with the driver sliding block 423, is provided with a moving groove for the sliding pin to move back and forth;
a high-speed machine driving seat 461 is movably arranged on the high-speed machine driving shaft 46 in a penetrating way, and the high-speed machine driving seat 461 is hinged with the high-speed machine shell part 41 through a three-eye connecting rod 462; a needle bar transmission cam 11 and a nylon cam 12 are arranged in the high-speed machine shell part 41 and are positioned on the upper shaft 7 in a penetrating way; the high-speed machine shell is also provided with a fork type take-up lever II 13, the fork type take-up lever II 13 and the fork type take-up lever I45 are connected in a penetrating way through a high-speed machine take-up driving lever pin 14, and the take-up lever transmission lever pin 14 is movably arranged on the high-speed machine shell in a penetrating way; the second fork take-up lever 13 is eccentrically connected to the nylon cam 12 through one end thereof.
An iron rod transmission cam is also arranged on the other side of the nylon cam 12 on the upper shaft 7;
the gantry I-shaped girder 3 is of a square tubular structure and is connected with the upper end of the high-speed machine shell, a preset distance is formed between the embroidery needle 54 and the needle plate 23, and the embroidery needle 54 is positioned at the upper part of the needle plate 23;
the frame part 1 comprises a frame 1.1, a moving groove 1.2 horizontally arranged at two ends of the frame 1.1 and a rail trolley 1.3 connected to the moving groove 1.2 in a sliding manner, and the rail trolley 1.3 is connected with a cloth clamping rail 1.5 through a frame fixing plate 1.4.
A positioning block 1.6 is arranged on the frame fixing plate 1.4 in a penetrating way through a positioning pin, and the positioning pin is vertically connected with the positioning block 1.6; two guide rail trolleys 1.3 are arranged and are connected to the two ends of the frame fixing plate 1.4 in a distributed manner;
the front side and the rear side of the frame 1.1 are respectively provided with a guide rail 15, the guide rails 15 are used for the guide rail trolley 1.3 to slide back and forth, and the guide rail trolley 1.3 is of a block structure with a groove at the lower part; the positioning pin is positioned in the middle of the guide rail trolley 1.3.
The embroidery needle 54 is connected with the high-speed machine shell part 41 through a high-speed machine needle clamp 16; the lower end of the high-speed machine shell part 41 is provided with a presser foot 17.
The present invention and its embodiments have been described above, and the description is not intended to be limiting, and the drawings are only one embodiment of the present invention, and the actual structure is not limited thereto. In summary, those skilled in the art should appreciate that they can readily use the disclosed conception and specific embodiments as a basis for designing or modifying other structures for carrying out the same purposes of the present invention without departing from the spirit and scope of the invention as defined by the appended claims.

Claims (8)

1. The utility model provides a can realize adjusting function sew with long stitches strip, embroidery, sew with long stitches embroidery all-in-one, its characterized in that includes framework portion, sliding connection at the shuttle bed portion of framework portion, locates gantry I shape girder on framework portion, rigid coupling at the aircraft nose portion of gantry I shape girder front side and the needle bar frame portion of being connected with the aircraft nose portion, wherein:
the shuttle race part comprises a shuttle race mounting plate, a lower shaft parallel to the shuttle race mounting plate and a plurality of shuttle race boxes arranged on the lower shaft in a penetrating way;
the head part comprises a high-speed machine shell part, a driver assembly, a take-up shaft and a high-speed machine take-up rod assembly;
the needle bar frame part comprises a needle bar frame fixed guide rail, a needle bar frame component and a color changing shaft, wherein the needle bar frame fixed guide rail, the needle bar frame component and the color changing shaft are respectively positioned at the upper end and the lower end and are parallel to each other.
2. The quilting strip, embroidering and embroidering all-in-one machine capable of realizing the adjusting function as claimed in claim 1, wherein the shuttle bed box is slidably connected to the shuttle bed mounting plate, and a needle plate is arranged at the upper part of the shuttle bed box;
the needle bar frame assembly comprises an embroidery needle arranged at the lower part, and an embroidery needle hole corresponding to the embroidery needle is formed in the needle plate;
the thread take-up lever assembly comprises a plurality of thread take-up levers fixedly connected to the thread take-up shaft at intervals, and the thread take-up levers penetrate through the needle bar frame assembly through the free ends of the thread take-up levers; the color changing shaft is horizontally connected with the needle bar frame assembly; and a first fork type take-up lever with one end in contact with the lower part of the take-up shaft is arranged on the casing part of the high-speed machine.
3. The quilting, embroidering and embroidering all-in-one machine capable of realizing the adjusting function as claimed in claim 2, wherein a high-speed machine shell is provided with a high-speed machine active shaft, an upper shaft and a lower shaft which are positioned on the high-speed machine shell are both driven by a servo motor, and the upper shaft drives a fork type take-up lever to rotate;
the driver assembly comprises a driver, a driver fixing plate, a driver sliding block and a driver fixing pin connected with the needle bar frame assembly;
the needle bar frame assembly comprises a high-speed machine needle bar arranged inside and an iron bar spring sleeved on the high-speed machine needle bar, and the embroidery needle is connected with the high-speed machine needle bar;
the needle bar frame component is connected with the high-speed machine shell in a sliding mode.
4. The quilting, embroidering and embroidering all-in-one machine capable of realizing the adjusting function as claimed in claim 3, wherein a threading hole is formed at a free end of the fork type take-up lever I, and a guide groove for the take-up lever to move up and down is formed on the needle bar frame assembly;
the upper part of the shuttle race mounting plate is provided with a shuttle race support connected with the needle plate, and the shuttle race support is clamped on the shuttle race mounting plate through the lower end of the shuttle race support;
the shuttle race box comprises a first bevel gear and a second bevel gear which are meshed with each other, and the first bevel gear penetrates through the lower shaft; the shuttle race box further comprises a rotating shuttle shell, a rotating shuttle inner container, a rotating shuttle outer sheet and a rotating shuttle shaft which is arranged in a penetrating mode, wherein the rotating shuttle shaft horizontally penetrates through the shuttle race support.
5. The quilting strip, embroidering and embroidering all-in-one machine capable of realizing the adjusting function is characterized in that the driver slider is arranged on the driver fixing plate in a penetrating way through a sliding pin, and a moving groove for the sliding pin to move back and forth is formed in one side of the driver fixing plate, which is in contact with the driver slider;
a high-speed machine driving seat is movably arranged on the driving shaft of the high-speed machine in a penetrating way, and the high-speed machine driving seat is hinged with the high-speed machine shell part through a three-hole connecting rod; a needle bar transmission cam and a nylon cam are arranged in the high-speed machine shell part and are positioned on the upper shaft in a penetrating way; the high-speed machine shell is also provided with a fork type take-up lever II, the fork type take-up lever II and the fork type take-up lever I are connected in a penetrating way through a high-speed machine take-up driving lever pin, and the take-up lever transmission lever pin is movably arranged on the high-speed machine shell in a penetrating way; the fork type take-up lever two-way is eccentrically connected to the nylon cam through one end of the fork type take-up lever two-way.
6. The quilting strip, embroidering and embroidering all-in-one machine capable of realizing the adjusting function as claimed in claim 5, wherein an iron rod transmission cam is further arranged on the upper shaft and on the other side of the nylon cam;
the gantry I-shaped girder is of a square tubular structure and is connected with the upper end of the high-speed machine shell, a preset distance is formed between the embroidery needle and the needle plate, and the embroidery needle is positioned at the upper part of the needle plate;
the frame part comprises a frame, a moving groove and a guide rail trolley, wherein the moving groove is horizontally formed in two ends of the frame, the guide rail trolley is connected to the clamping groove in a sliding mode, and the guide rail trolley is connected with the cloth clamping rail through a frame fixing plate.
7. The quilting strip, embroidering and embroidering all-in-one machine capable of realizing the adjusting function as claimed in claim 6, wherein a positioning block is arranged on the frame fixing plate in a penetrating manner through a positioning pin, and the positioning pin is vertically connected with the positioning block; the two guide rail trolleys are distributed and connected at the two ends of the frame fixing plate;
the front side and the rear side of the frame are respectively provided with a guide rail, the guide rails are used for the guide rail trolley to slide back and forth, and the guide rail trolley is of a block structure with a groove at the lower part; the positioning pin is positioned in the middle of the guide rail trolley.
8. The quilting, embroidering and embroidering all-in-one machine capable of realizing the adjusting function as claimed in claim 7, wherein the embroidery needle is connected with the high-speed machine shell part through a high-speed machine needle clamp; and a presser foot is arranged at the lower end of the casing part of the high-speed machine.
CN202210038027.4A 2022-01-13 2022-01-13 Quilting strip, embroidering and embroidering all-in-one machine capable of achieving adjusting function Withdrawn CN114411350A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202210038027.4A CN114411350A (en) 2022-01-13 2022-01-13 Quilting strip, embroidering and embroidering all-in-one machine capable of achieving adjusting function

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202210038027.4A CN114411350A (en) 2022-01-13 2022-01-13 Quilting strip, embroidering and embroidering all-in-one machine capable of achieving adjusting function

Publications (1)

Publication Number Publication Date
CN114411350A true CN114411350A (en) 2022-04-29

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202210038027.4A Withdrawn CN114411350A (en) 2022-01-13 2022-01-13 Quilting strip, embroidering and embroidering all-in-one machine capable of achieving adjusting function

Country Status (1)

Country Link
CN (1) CN114411350A (en)

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Application publication date: 20220429