CN217499663U - Rotating shuttle machine head transmission device of double-row quilting and embroidering machine - Google Patents
Rotating shuttle machine head transmission device of double-row quilting and embroidering machine Download PDFInfo
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- CN217499663U CN217499663U CN202220937555.9U CN202220937555U CN217499663U CN 217499663 U CN217499663 U CN 217499663U CN 202220937555 U CN202220937555 U CN 202220937555U CN 217499663 U CN217499663 U CN 217499663U
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Abstract
The utility model discloses a double is sew with long stitches embroidery machine rotating shuttle aircraft nose transmission, include: the device comprises a box body, a first synchronous belt pulley, a main transmission upper shaft, a roller, a servo motor, a motor mounting seat, a motor belt pulley, a tensioning shaft, a second synchronous belt pulley, a pointer, a dial plate, a main transmission lower shaft, a first gear, a middle transmission shaft, a linear guide rail, a connecting plate, a movable shaft and a second gear; the synchronous belt wheel I is connected with the main transmission upper shaft; the main transmission upper shaft is connected with the machine head; the first synchronous belt wheel is connected with the motor belt wheel through a synchronous belt; the synchronous pulley I is connected with the synchronous pulley II through a synchronous belt; the tensioning shaft is connected with the tensioning support base I; the servo motor is connected with the motor mounting seat; the motor belt wheel is connected with the servo motor; the moving shaft is connected with the back row rotating shuttle; the second gear is connected with the moving shaft; the linear guide rail is connected with the box body.
Description
Technical Field
This patent belongs to family and spins quilting embroidery technical field, belongs to family and spins a part of double quilting embroidery machine, concretely relates to rotating shuttle aircraft nose transmission.
Background
According to market customer demand, present single row quilting embroidery machine makes some flower types part of occasionally the heavy thread, flower type is more single, the customer is very big to this suggestion, need the quilting embroidery machine of double-row needle to splice the flower type and reach the flower type and do not have the heavy thread, back row aircraft nose is portable to solve the quilting embroidery machine and make up the flower type and do not have the heavy thread and can embroider big or small flower shape, with the front and back row rotating shuttle aircraft nose transmission of double quilting embroidery machine adopts many motor distributing type drive structure, aircraft nose and rotating shuttle have two motors to provide power respectively, the installation is maintained complicacy, it is with high costs, it is inconvenient to use. The single-motor centralized driving structure is high in efficiency, simple and convenient to operate and simple and convenient to install and maintain.
Disclosure of Invention
The utility model discloses an overcome above-mentioned prior art's weak point, provide a double quilting embroidery machine rotating shuttle aircraft nose transmission, the device can be for double quilting embroidery machine front and back row rotating shuttle aircraft nose provide power simultaneously to the flower type does not have the heavy-thread when quilting the embroidery operation, still provides the function of power when realizing simultaneously that the aircraft nose aligns when embroidering big small flower type respectively with the dislocation around the while.
The utility model adopts the technical proposal that:
double quilting embroidery machine rotating shuttle aircraft nose transmission includes: the automatic transmission device comprises a box body, a first synchronous belt wheel, a bearing seat 6005, a main transmission upper shaft, a roller, a first tensioning support seat, a servo motor, a motor mounting seat, a motor belt wheel, a tensioning shaft, a second synchronous belt wheel, a pointer, a bearing seat 6002A, a dial, a main transmission lower shaft, a first gear, a bearing seat 6002B, an intermediate transmission shaft, a linear guide rail, a connecting plate, a moving shaft, a moving bearing seat 6002 and a second gear.
The box body is connected with the bearing seat 60053;
the bearing seat 6005 is connected with a first synchronous pulley;
the synchronous belt wheel I is connected with the main transmission upper shaft;
the main transmission upper shaft is connected with the machine head;
the first synchronous belt wheel is connected with the motor belt wheel through a synchronous belt;
the synchronous pulley I is connected with the synchronous pulley II through a synchronous belt;
the first tensioning support seat is connected with the box body;
the tensioning shaft is connected with the tensioning support seat I;
the roller is connected with the tensioning shaft;
the servo motor is connected with the motor mounting seat;
the motor belt wheel is connected with the servo motor;
the dial plate is connected with the main transmission lower shaft;
the main transmission lower shaft is connected with a bearing seat 6002A;
the bearing seat 6002A is connected with the box body;
the main transmission lower shaft is connected with a second synchronous belt pulley;
the first synchronous belt wheel is connected with the middle transmission shaft;
the moving shaft is connected with the back row rotating shuttle;
the main transmission lower shaft is connected with the front row rotating shuttle;
the middle transmission shaft is connected with the bearing seat 6002B;
the bearing seat 6002B is connected with the box body;
the middle transmission shaft is connected with the first gear;
the first gear is connected with the second gear;
the second gear is connected with the moving shaft;
the movable shaft is connected with a movable bearing seat 6002;
the movable bearing seat 6002 is connected with the connecting plate;
the connecting plate is connected with the linear guide rail;
the linear guide rail is connected with the box body.
Compared with the prior art, the beneficial effects of the utility model are that:
the utility model overcomes prior art's is not enough, through the utility model discloses a design, realized that the double row of rotating shuttle aircraft nose provides power simultaneously around embroidering the machine of client to the flower type does not have the heavy-thread when embroidering the operation, still provides the function of power when embroidering big or small flower type respectively when the aircraft nose aligns with the dislocation around realizing simultaneously.
Drawings
Fig. 1 is a three-dimensional isometric general assembly schematic diagram of a rotating shuttle head transmission device of a double-row quilting and embroidering machine.
1. The automatic transmission device comprises a box body 2, a first synchronous pulley 3, a bearing seat 60054, a main transmission upper shaft 5, a roller 6, a first tensioning support seat 7, a servo motor 8, a motor mounting seat 9, a motor pulley 10, a tensioning shaft 11, a second synchronous pulley 12, a pointer 13, a bearing seat 6002A 14, a dial 15, a lower main transmission shaft 16, a first gear 17, a bearing seat 6002B 18, an intermediate transmission shaft 19, a linear guide rail 20, a connecting plate 21, a moving shaft 22, a moving bearing seat 600223 and a second gear.
Detailed Description
For a further understanding of the contents, features and effects of the present invention, reference will now be made to the following examples, which are illustrated in the accompanying drawings. It should be noted that the present embodiment is illustrative, not restrictive, and the scope of the invention should not be limited thereby.
Double quilting embroidery machine rotating shuttle aircraft nose transmission includes: the automatic tension device comprises a box body 1, a first synchronous pulley 2, a bearing seat 60053, a main transmission upper shaft 4, a roller 5, a first tension support seat 6, a servo motor 7, a motor mounting seat 8, a motor pulley 9, a tension shaft 10, a second synchronous pulley 11, a pointer 12, a bearing seat 6002A13, a dial 14, a main transmission lower shaft 15, a first gear 16, a bearing seat 6002B17, an intermediate transmission shaft 18, a linear guide rail 19, a connecting plate 20, a moving shaft 21, a moving bearing seat 600222 and a second gear 23.
The box body 1 is connected with a bearing seat 60053;
the bearing seat 60053 is connected with a synchronous pulley I2;
the synchronous belt wheel I2 is connected with a main transmission upper shaft 4;
the main transmission upper shaft 4 is connected with the machine head;
the synchronous pulley I2 is connected with the motor pulley 9 through a synchronous belt;
the synchronous pulley I2 is connected with the synchronous pulley II 11 through a synchronous belt;
the first tension supporting seat 6 is connected with the box body 1;
the tensioning shaft 10 is connected with the tensioning support seat I6;
the roller 5 is connected with the tensioning shaft 10;
the servo motor 7 is connected with the motor mounting seat 8;
the motor belt wheel 9 is connected with the servo motor 7;
the dial 14 is connected with a main transmission lower shaft 15;
the main transmission lower shaft 15 is connected with a bearing seat 6002A 13;
the bearing seat 6002A13 is connected with the box body 1;
the main transmission lower shaft 15 is connected with the second synchronous belt wheel 11;
the synchronous pulley I2 is connected with an intermediate transmission shaft 18;
the moving shaft 21 is connected with the back row rotating shuttle;
the main transmission lower shaft 15 is connected with the front row rotating shuttle;
the intermediate transmission shaft 18 is connected with a bearing seat 6002B 17;
the bearing seat 6002B17 is connected with the box body 1;
the intermediate transmission shaft 18 is connected with the first gear 16;
the first gear 16 is connected with the second gear 23;
the second gear 23 is connected with the moving shaft 21;
the moving shaft 21 is connected with the moving bearing seat 600222;
the movable bearing seat 600222 is connected with the connecting plate 20;
the connecting plate 20 is connected with the linear guide rail 19;
the linear guide rail 19 is connected with the box body 1.
When the home textile double-row quilting and embroidering machine quilts and embroiders large patterns, the front and rear rows of machine head rotating shuttles provide power through the servo motor 7, the main transmission upper shaft 4 is driven to rotate through the belt by utilizing the motor belt wheel 9 and the synchronous belt wheel I2 to provide power for the machine head, meanwhile, the synchronous belt wheel I2 and the synchronous belt wheel II 11 provide power for the front row rotating shuttle movement, the synchronous belt wheel I2 and the synchronous belt wheel II 11 are connected through a synchronous belt, the gear I16 is connected with the gear II 23 through big and small teeth for transmission to provide power for the rear row rotating shuttle, and the second gear 23 is connected with the linear guide rail 19 through the connecting plate 20 to ensure that the power is still provided after the rotating shuttle axially moves, thereby realizing that the front and back rows of rotating shuttle machine heads of the client double-row quilting and embroidering machine simultaneously provide power so that patterns are not provided with double threads during quilting and embroidering operation, meanwhile, the function of providing power when big and small patterns are embroidered respectively when the front and rear machine heads are aligned and staggered is realized.
Claims (5)
1. A double-row quilting and embroidering machine rotating shuttle machine head transmission device comprises: the device comprises a box body, a first synchronous belt wheel, a bearing seat 6005, a main transmission upper shaft, a roller, a first tensioning support seat, a servo motor, a motor mounting seat, a motor belt wheel, a tensioning shaft, a second synchronous belt wheel, a pointer, a bearing seat 6002A, a dial, a main transmission lower shaft, a first gear, a bearing seat 6002B, an intermediate transmission shaft, a linear guide rail, a connecting plate, a moving shaft, a moving bearing seat 6002 and a second gear; the method is characterized in that: the synchronous belt wheel I is connected with the main transmission upper shaft; the main transmission upper shaft is connected with the machine head; the first synchronous belt wheel is connected with the motor belt wheel through a synchronous belt; the synchronous pulley I is connected with the synchronous pulley II through a synchronous belt; the tensioning shaft is connected with the tensioning support base I; the roller is connected with the tensioning shaft; the servo motor is connected with the motor mounting seat; the motor belt wheel is connected with the servo motor; the dial plate is connected with the main transmission lower shaft; the first synchronous belt wheel is connected with the middle transmission shaft; the moving shaft is connected with the back row rotating shuttle; the bearing seat 6002B is connected with the box body; the middle transmission shaft is connected with the first gear; the first gear is connected with the second gear; the second gear is connected with the moving shaft; the movable shaft is connected with the movable bearing pedestal 6002; the linear guide rail is connected with the box body.
2. The double row quilting and embroidering machine rotating shuttle machine head transmission device as claimed in claim 1, wherein: and the main transmission lower shaft is connected with a second synchronous belt wheel.
3. The double row quilting and embroidering machine rotating shuttle machine head transmission device as claimed in claim 1, wherein: the main transmission lower shaft is connected with the front row rotating shuttle.
4. The double row quilting and embroidering machine rotating shuttle machine head transmission device as claimed in claim 1, wherein: the lower main drive shaft is connected with a bearing seat 6002A.
5. The double row quilting and embroidering machine rotating shuttle machine head transmission device as claimed in claim 1, wherein: the intermediate drive shaft is connected to the bearing block 6002B.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202220937555.9U CN217499663U (en) | 2022-04-21 | 2022-04-21 | Rotating shuttle machine head transmission device of double-row quilting and embroidering machine |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN202220937555.9U CN217499663U (en) | 2022-04-21 | 2022-04-21 | Rotating shuttle machine head transmission device of double-row quilting and embroidering machine |
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CN217499663U true CN217499663U (en) | 2022-09-27 |
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CN202220937555.9U Active CN217499663U (en) | 2022-04-21 | 2022-04-21 | Rotating shuttle machine head transmission device of double-row quilting and embroidering machine |
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CN (1) | CN217499663U (en) |
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2022
- 2022-04-21 CN CN202220937555.9U patent/CN217499663U/en active Active
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