CN214655600U - Adjustable button belt knitting machine platform - Google Patents

Adjustable button belt knitting machine platform Download PDF

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Publication number
CN214655600U
CN214655600U CN202120598738.8U CN202120598738U CN214655600U CN 214655600 U CN214655600 U CN 214655600U CN 202120598738 U CN202120598738 U CN 202120598738U CN 214655600 U CN214655600 U CN 214655600U
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CN
China
Prior art keywords
guide rail
steering gear
transition
button door
woven
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Active
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CN202120598738.8U
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Chinese (zh)
Inventor
韩百峰
韩金辉
陈兵
刘建峰
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Xuzhou Henghui Braiding Machine Co ltd
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Xuzhou Henghui Braiding Machine Co ltd
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Priority to CN202120598738.8U priority Critical patent/CN214655600U/en
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Abstract

An adjustable platform of a buttonholing strip braiding machine belongs to the field of textile machinery. The ligament braider platform includes: the device comprises an upper plate, a twisted door solid woven guide rail, a transition guide rail, a guide rail steering gear, a twisted door solid drive plate system, a transition drive plate and a steering gear driving device; the entity woven guide rail of the button door belt is an open-loop circular guide rail formed by continuously arranging '8' -shaped runways according to pitch circles, the middle position of the open-loop circular guide rail is disconnected, and a transition guide rail is arranged at the position of the disconnected guide rail; a guide rail steering gear is arranged between the disconnecting guide rail and the transition guide rail and is connected to a steering gear driving device; the solid woven guide rail of the button door belt is provided with a solid dial system of the button door belt, and the transition dial is arranged at the position of the transition guide rail. The advantages are that: the guide rail is divided into a left button door forming guide rail and a right button door forming guide rail by a button door entity weaving guide rail through a guide rail steering gear, the spindles are automatically woven into a button door product at one time, the shape and the size of the button door are stable, manpower and financial resources are saved, and the button door quality and the production capacity are improved.

Description

Adjustable button belt knitting machine platform
Technical Field
The utility model relates to the field of textile machinery, especially a link tape braider platform with adjustable.
Background
People are in daily life, most dress button door open a bar seam then sew up all around, no matter be manual work or machine, such button door shape is fixed, can not open and shut flexible, and the size can not be adjusted, and the distance between the button door also can't be adjusted, and in use slowly warp through the time lapse, damages the pleasing to the eye of clothes, and the button door that enlarges and split simultaneously needs to sew up again, and is very inconvenient, also not economic, extravagant manpower and financial resources.
In recent years, many garment factories at home and abroad want to weave buttons in a weaving mode to meet various requirements of clothes, and common household knitting machines mainly adopt a circular knitting machine and a flat knitting machine. As shown in the figure:
fig. 1 is a schematic view of a knitting machine guide for knitting a circular knit. The guide rails for weaving the circular braided fabric are arranged according to a pitch circle on an 8-shaped runway, a motor (1-2) operates to drive a driving plate (1-4) to operate, spindles (1-1) for driving yarns by the driving plate operate and stagger along the 8-shaped runway on an upper disc (1-3), and the spindles with the yarns are woven in a staggering way to form a cylindrical section.
Fig. 2 is a schematic view of a braiding machine guide for braiding a flat braid. The guide rail for weaving the flat braided fabric is that an upper disc (1-3) guide rail 8-shaped runway is not arranged according to a full circle of graduation, the tail interrupts the guide rail to form a loop, a drive plate (1-4) runs, spindles with yarns are driven by the drive plate to run and stagger along the 8-shaped runway, and the spindles with the yarns are woven in a staggering way to form a flat section.
The cross section of a product knitted by the circular knitting machine is circular; the cross section of the product braided by the flat braiding machine is flat. At present, both the two knitting machines are regularly and continuously knitted, the direction of a spindle is changed in the middle of a guide rail, and the product with the buttonholing strip cannot be knitted.
SUMMERY OF THE UTILITY MODEL
The utility model aims at providing a button area braider platform with adjustable, the braider of solving prior art all is that a law weaves in succession, can't compile out the problem of button area product.
The purpose of the utility model is realized like this: the ligament braider platform includes: the device comprises an upper plate, a twisted door solid woven guide rail, a transition guide rail, a guide rail steering gear, a twisted door solid drive plate system, a transition drive plate and a steering gear driving device;
the twisted door belt solid woven guide rail, the transition guide rail, the guide rail steering gear, the twisted door belt solid drive plate system and the transition drive plate are all positioned on the upper plate;
the entity woven guide rail of the button door belt is an open-loop circular guide rail formed by continuously arranging '8' -shaped runways according to pitch circles, the middle position of the open-loop circular guide rail is disconnected, and a transition guide rail is arranged at the position of the disconnected guide rail; a guide rail steering gear is arranged between the disconnecting guide rail and the transition guide rail and is connected to a steering gear driving device; the solid woven guide rail of the button door belt is provided with a solid dial system of the button door belt, and the transition dial is arranged at the position of the transition guide rail.
The ligament entity woven rail of the button includes: the left button door forming guide rail and the right button door forming guide rail have the same structure; the guide rail is a semicircular guide rail formed by continuous arrangement according to '8' -shaped track sections, and the '8' -shaped track section circle at the tail end of the semicircular guide rail is a large-circle guide rail; the pitch circle of the '8' -shaped runway at the head end of the semicircular guide rail is a small circular guide rail.
The physical dial of the link door belt comprises: the left button door forming driving plate and the right button door forming driving plate have the same structure; both comprise: a five-fork drive plate, a four-fork drive plate and a three-fork drive plate; a large circular guide rail at the tail end of the semicircular guide rail is provided with a five-shifting-fork drive plate; a small round guide rail at the head end of the semicircular guide rail is provided with a three-shifting fork drive plate; four shifting fork drive plates are arranged on the guide rails between the large round guide rail and the small round guide rail.
The transition driving plate is a four-shifting fork driving plate, the number of the transition driving plate is two, the transition driving plate is respectively positioned between the connection of two three-shifting fork driving plates of the left button door forming driving plate and the right button door forming driving plate, and the upper position and the lower position of the transition driving plate are respectively provided with one.
The transition guide rail is an arc-shaped guide rail; the two transition guide rails are arranged between the joints of the two small circular guide rails of the left button door forming guide rail and the right button door forming guide rail, and one transition guide rail is arranged at the upper position and the lower position respectively.
The upper end of the guide rail steering gear is provided with a disc, and the bottom surface of the disc is connected with a shaft; the upper surface of the disc is provided with a plurality of crossed and penetrated arc guide rails and linear guide rails; the end face of the guide rail steering gear is provided with a hole, and a positioning shaft is connected in the hole.
The steering gear drive device includes: the device comprises a servo motor, a driving gear, a medium gear, a guide rail steering gear, a steering gear shaft seat and a positioning shaft;
the servo motor is connected to the lower disc, an output shaft of the servo motor is connected with a driving gear, the driving gear is connected with a guide rail steering gear through a medium gear, the medium gear is sleeved on a medium gear shaft, and the medium gear shaft is connected to the upper disc; the guide rail steering gear is connected to a shaft at one end of the guide rail steering gear, the guide rail steering gear is externally connected to a steering gear shaft base through a bearing, and the steering gear shaft base is connected to the bottom surface of the upper disc.
The steering gear shaft base is internally provided with a bearing which is sleeved on a shaft of the guide rail steering gear, and the steering gear shaft base is provided with a sector arc groove.
The guide rail steering device has the beneficial effects that due to the adoption of the scheme, the guide rail steering devices are positioned on two sides of the transition guide rail and positioned at the connecting part of the left button door forming guide rail and the right button door forming guide rail; the guide rail steering gear is rotated to form a left button door forming guide rail and a right button door forming guide rail; or the rotary guide rail diverter can form an integral open-loop circular guide rail. The end surface of the guide rail steering gear is provided with an arc guide rail and a linear guide rail, the direction of the guide rail can be changed by rotating the guide rail by a proper angle, the end surface of the guide rail steering gear is provided with a hole, a positioning shaft is sleeved in the hole, one end of the positioning shaft is connected to the guide rail steering gear, and the other end of the positioning shaft is inserted into a fan-shaped arc groove on a steering gear shaft seat; the position of the positioning shaft on the guide rail steering gear has a determined position relation with the arc guide rail and the linear guide rail on the end surface of the guide rail steering gear; the positioning shaft of the rotary guide rail steering gear inserted in the sector arc groove of the steering gear shaft base is limited by the arc groove, and the guide rail on the end surface of the guide rail steering gear just forms a matched guide rail with the button belt entity woven guide rail, the left button door forming guide rail and the right button door forming guide rail, so that the transition guide rail in the middle of the button belt entity woven guide rail is communicated or disconnected.
The steering gear shaft seat is internally provided with a bearing, the bearing is sleeved on a shaft platform of the guide rail steering gear, a fan-shaped arc groove is arranged on the steering gear shaft seat, one end positioning shaft of the guide rail steering gear is inserted into the arc groove on the shaft seat, the servo motor drives the guide rail steering gear to operate through a gear, the positioning shaft rotates in the steering gear shaft seat groove by taking the shaft seat as the center, the rotating angle is limited and controlled by the arc on the steering gear bearing, so that the guide rail on the end face of the guide rail steering gear is changed in direction and is in butt joint fit with the left and right button door forming guide rails.
When the guide rail steering gear rotates to a certain angle, the left button door forming guide rail, the right button door forming guide rail and the transition guide rail are communicated to form a button door belt entity weaving guide rail; at the moment, the spindles can run into the right buttonhole forming guide rail from the left buttonhole forming guide rail through the transition guide rail, turn to the tail end through the right buttonhole forming guide rail and interweave back to the left buttonhole forming guide rail, and the spindles are circularly woven to form the integral part without the buttonhole of the buttonhole belt; stopping when the knitting meets the requirement, rotating a guide rail steering device by an angle according to the requirement, dividing the entity knitting guide rail of the button belt into a left button door forming guide rail and a right button door forming guide rail, wherein the left button door forming guide rail and the right button door forming guide rail are not communicated to form independent guide rails, and interweaving and knitting spindles on the guide rails; forming a button door; when the button door formed by weaving meets the requirement, the machine is stopped, and the guide rail steering gear is circularly woven according to the steering to form the button door belt.
The problem of prior art's braider all be a law and weave in succession, can't compile the button area product is solved, reached the utility model discloses a purpose.
The advantages are that: the guide rail of the utility model is divided into a left button door forming guide rail and a right button door forming guide rail by a button door belt entity weaving guide rail through a guide rail steering gear, a spindle is woven out once to form a button door, the periphery of the button door is continuously woven out without sewing, the shape and the size of the button door are stable, the button door can be freely stretched and closed without cracking, and the size of the button door and the distance between the button doors can be adjusted according to the requirements of customers; the automatic weaving forming can save manpower and financial resources and improve the quality and the production quantity of the button door.
Drawings
Figure 1 is a schematic view of a prior art woven circular guide rail.
Figure 2 is a schematic view of a prior art woven flat guide rail.
Fig. 3 is a diagram of the guide rail for the entity woven by the button door belt of the present invention.
Fig. 4 is a schematic view of the arrangement of the whole guide rail of the weaving platform of the present invention.
FIG. 5 is a schematic view of the direction of movement of the twist tie weaving solid dial arrangement spindle of the present invention.
Fig. 6 is the schematic view of the right button door forming guide rail of the utility model.
Fig. 7 is a schematic view of the arrangement of the right knob door driving plate and the moving direction of the spindle of the present invention.
Fig. 8 is the schematic view of the left button door forming guide rail of the present invention.
Fig. 9 is a schematic view of the arrangement of the left knob door driving plate and the movement direction of the spindle of the present invention.
Fig. 10 is a schematic view of the steering gear driving device of the present invention.
Fig. 11 is a schematic view of the front view structure of the guide rail steering gear of the present invention.
Fig. 12 is a horizontal view of the guide rail steering gear of the present invention.
Fig. 13 is a front view schematic diagram of the axle seat of the steering gear of the present invention.
Fig. 14 is a horizontal view of the steering gear shaft base.
Fig. 15 is a schematic view of a product knitted by the ligament knitting machine of the invention.
In the figure, 1-1, a horse-walking spindle; 1-2, a motor; 1-3, upper plate; 1-4, dial.
1. A left button door forming guide rail; 2. a guideway diverter; 3. a transition rail; 4. a steering gear drive device; 5. a right button door forming guide rail; 6. the entity of the button door belt weaves the guide rail; 7. a transition drive plate; 8. positioning the shaft; 9. a guideway diverter gear; 10. a steering gear shaft seat; 11. a motor gear; 12. a idler gear; 13. a guideway diverter gear; 14. a servo motor.
Detailed Description
Example 1: the ligament braider platform includes: the device comprises an upper disc 1-3, a twisted door belt solid woven guide rail 6, a transition guide rail 3, a guide rail steering gear 2, a twisted door belt solid dial system, a transition dial 7 and a steering gear driving device 4.
The twisted door belt solid woven guide rail 6, the transition guide rail 3, the guide rail steering gear 2, the twisted door belt solid drive plate system and the transition drive plate 7 are all positioned on the upper plate 1-3.
The entity woven guide rail 6 of the button door belt is an open-loop circular guide rail formed by continuously arranging '8' -shaped runways according to pitch circles, the middle position of the open-loop circular guide rail is disconnected, and a transition guide rail 3 is arranged at the position of the disconnected guide rail; a guide rail steering gear 2 is arranged between the disconnecting guide rail and the transition guide rail 3, and the guide rail steering gear 2 is connected to a steering gear driving device 4; the solid woven guide rail 6 of the button door belt is provided with a solid dial system of the button door belt, and the transition dial 7 is arranged at the position of the transition guide rail 3.
The solid woven guide rail 6 of the button door belt comprises: the left button door forming guide rail 1 and the right button door forming guide rail 5 are identical in structure; the guide rail is a semicircular guide rail formed by continuous arrangement according to '8' -shaped track sections, and the '8' -shaped track section circle at the tail end of the semicircular guide rail is a large-circle guide rail; the pitch circle of the '8' -shaped runway at the head end of the semicircular guide rail is a small circular guide rail.
The physical dial of the link door belt comprises: the left button door forming driving plate and the right button door forming driving plate have the same structure; both comprise: a five-fork drive plate, a four-fork drive plate and a three-fork drive plate; a large circular guide rail at the tail end of the semicircular guide rail is provided with a five-shifting-fork drive plate; a small round guide rail at the head end of the semicircular guide rail is provided with a three-shifting fork drive plate; four shifting fork drive plates are arranged on the guide rails between the large round guide rail and the small round guide rail.
The transition driving plate 7 is a four-shifting fork driving plate, the number of the transition driving plate 7 is two, the transition driving plate is respectively positioned between the connection of two three-shifting fork driving plates of the left button door forming driving plate and the right button door forming driving plate, and the upper position and the lower position of the transition driving plate are respectively arranged one.
The transition guide rail 3 is an arc-shaped guide rail; the two transition guide rails 3 are arranged between the joints of the two small circular guide rails of the left button door forming guide rail 1 and the right button door forming guide rail 5, and one transition guide rail is arranged at the upper position and the lower position respectively.
The upper end of the guide rail steering gear 2 is provided with a disc, and the bottom surface of the disc is connected with a shaft; the upper surface of the disc is provided with a plurality of crossed and penetrated arc guide rails and linear guide rails; the end face of the guide rail steering gear 2 is provided with a hole, and a positioning shaft 8 is connected in the hole.
The steering gear drive device includes: a servo motor 9, a driving gear 11, a medium gear 12, a guide rail steering gear 13, a guide rail steering gear 2, a steering gear shaft base 10 and a positioning shaft 8;
a servo motor 9 is connected to the lower disc, a driving gear 11 is connected to an output shaft of the servo motor 9, the driving gear 11 is connected with a guide rail steering gear 13 through a medium gear 12, the medium gear 12 is sleeved on a medium gear shaft, and the medium gear shaft is connected to the upper disc; the guide rail steering gear 13 is connected to a shaft at one end of the guide rail steering gear 2, the guide rail steering gear 2 is externally connected to a steering gear shaft base 10 through a bearing, and the steering gear shaft base 10 is connected to the bottom surface of the upper disc.
The steering gear shaft base is internally provided with a bearing which is sleeved on a shaft of the guide rail steering gear, and the steering gear shaft base is provided with a sector arc groove.
The button door belt entity woven guide rail 6 is characterized in that when the guide rail steering gear 2 turns to a certain angle, the left button door forming guide rail 1, the right button door forming guide rail 5 and the transition guide rail 3 can be communicated to form a button door belt entity woven guide rail 6; the spindles can run from the left button door forming guide rail 1 to the right button door forming guide rail 5 through the transition guide rail 3, the spindles are turned by the tail end of the right button door forming guide rail 5 and then are interwoven back to the left button door forming guide rail 1, and the spindles are circularly woven to form the integral button-free part of the button door belt.
The left button door forming guide rail 1 and the right button door forming guide rail 5 are guide rails arranged on button door forming buttons, the guide rails are arranged in a button door belt entity woven guide rail 6, the button door belt entity woven guide rail 6 is divided into the left button door forming guide rail 1 and the right button door forming guide rail 5 through the turning and reversing of a guide rail steering gear 2, and the middles of the left button door forming guide rail 1 and the right button door forming guide rail 5 are not communicated to form independent guide rails. A buttonhole is formed in the middle of the spindle braiding. The left button door forming guide rail 1 and the right button door forming guide rail 5 are respectively symmetrical, a left button door forming drive plate and a right button door forming drive plate are arranged at the upper parts of the left button door forming guide rail and the right button door forming guide rail, and a button door is formed in the middle of spindle weaving.

Claims (8)

1. An adjustable ligament loom platform, the ligament loom platform comprising: hanging the plate; the method is characterized in that: further comprising: the device comprises a twisted door belt solid woven guide rail, a transition guide rail, a guide rail steering gear, a twisted door belt solid drive plate system, a transition drive plate and a steering gear driving device;
the twisted door belt solid woven guide rail, the transition guide rail, the guide rail steering gear, the twisted door belt solid drive plate system and the transition drive plate are all positioned on the upper plate;
the entity woven guide rail of the button door belt is an open-loop circular guide rail formed by continuously arranging '8' -shaped runways according to pitch circles, the middle position of the open-loop circular guide rail is disconnected, and a transition guide rail is arranged at the position of the disconnected guide rail; a guide rail steering gear is arranged between the disconnecting guide rail and the transition guide rail and is connected to a steering gear driving device; the solid woven guide rail of the button door belt is provided with a solid dial system of the button door belt, and the transition dial is arranged at the position of the transition guide rail.
2. The adjustable platform of claim 1, wherein: the ligament entity woven rail of the button includes: the left button door forming guide rail and the right button door forming guide rail have the same structure; the guide rail is a semicircular guide rail formed by continuous arrangement according to '8' -shaped track sections, and the '8' -shaped track section circle at the tail end of the semicircular guide rail is a large-circle guide rail; the pitch circle of the '8' -shaped runway at the head end of the semicircular guide rail is a small circular guide rail.
3. The adjustable platform of claim 1, wherein: the physical dial of the link door belt comprises: the left button door forming driving plate and the right button door forming driving plate have the same structure; both comprise: a five-fork drive plate, a four-fork drive plate and a three-fork drive plate; a large circular guide rail at the tail end of the semicircular guide rail is provided with a five-shifting-fork drive plate; a small round guide rail at the head end of the semicircular guide rail is provided with a three-shifting fork drive plate; four shifting fork drive plates are arranged on the guide rails between the large round guide rail and the small round guide rail.
4. The adjustable platform of claim 1, wherein: the transition driving plate is a four-shifting fork driving plate, the number of the transition driving plate is two, the transition driving plate is respectively positioned between the connection of two three-shifting fork driving plates of the left button door forming driving plate and the right button door forming driving plate, and the upper position and the lower position of the transition driving plate are respectively provided with one.
5. The adjustable platform of claim 1, wherein: the transition guide rail is an arc-shaped guide rail; the two transition guide rails are arranged between the joints of the two small circular guide rails of the left button door forming guide rail and the right button door forming guide rail, and one transition guide rail is arranged at the upper position and the lower position respectively.
6. The adjustable platform of claim 1, wherein: the upper end of the guide rail steering gear is provided with a disc, and the bottom surface of the disc is connected with a shaft; the upper surface of the disc is provided with a plurality of crossed and penetrated arc guide rails and linear guide rails; the end face of the guide rail steering gear is provided with a hole, and a positioning shaft is connected in the hole.
7. The adjustable platform of claim 1, wherein: the steering gear drive device includes: the device comprises a servo motor, a driving gear, a medium gear, a guide rail steering gear, a steering gear shaft seat and a positioning shaft;
the servo motor is connected to the lower disc, an output shaft of the servo motor is connected with a driving gear, the driving gear is connected with a guide rail steering gear through a medium gear, the medium gear is sleeved on a medium gear shaft, and the medium gear shaft is connected to the upper disc; the guide rail steering gear is connected to a shaft at one end of the guide rail steering gear, the guide rail steering gear is externally connected to a steering gear shaft base through a bearing, and the steering gear shaft base is connected to the bottom surface of the upper disc.
8. The adjustable platform of claim 7, wherein: the steering gear shaft base is internally provided with a bearing which is sleeved on a shaft of the guide rail steering gear, and the steering gear shaft base is provided with a sector arc groove.
CN202120598738.8U 2021-03-24 2021-03-24 Adjustable button belt knitting machine platform Active CN214655600U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202120598738.8U CN214655600U (en) 2021-03-24 2021-03-24 Adjustable button belt knitting machine platform

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202120598738.8U CN214655600U (en) 2021-03-24 2021-03-24 Adjustable button belt knitting machine platform

Publications (1)

Publication Number Publication Date
CN214655600U true CN214655600U (en) 2021-11-09

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ID=78455789

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202120598738.8U Active CN214655600U (en) 2021-03-24 2021-03-24 Adjustable button belt knitting machine platform

Country Status (1)

Country Link
CN (1) CN214655600U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115287819A (en) * 2022-06-08 2022-11-04 东华大学 Rotary three-dimensional knitting machine based on three-notch drive plate design

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115287819A (en) * 2022-06-08 2022-11-04 东华大学 Rotary three-dimensional knitting machine based on three-notch drive plate design
CN115287819B (en) * 2022-06-08 2023-08-01 东华大学 Rotary three-dimensional braiding machine based on three-notch driving plate design

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