[go: up one dir, main page]

CN102605572B - Double-needle loop nailing machine with transmission structure - Google Patents

Double-needle loop nailing machine with transmission structure Download PDF

Info

Publication number
CN102605572B
CN102605572B CN 201210095835 CN201210095835A CN102605572B CN 102605572 B CN102605572 B CN 102605572B CN 201210095835 CN201210095835 CN 201210095835 CN 201210095835 A CN201210095835 A CN 201210095835A CN 102605572 B CN102605572 B CN 102605572B
Authority
CN
China
Prior art keywords
lower shaft
rotating shuttle
eedle
crank
drives
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.)
Expired - Fee Related
Application number
CN 201210095835
Other languages
Chinese (zh)
Other versions
CN102605572A (en
Inventor
罗千
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Supreme Intelligent Technology Co Ltd
Original Assignee
Ningbo Supreme Electronic Machinery Co Ltd
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by Ningbo Supreme Electronic Machinery Co Ltd filed Critical Ningbo Supreme Electronic Machinery Co Ltd
Priority to CN 201210095835 priority Critical patent/CN102605572B/en
Publication of CN102605572A publication Critical patent/CN102605572A/en
Application granted granted Critical
Publication of CN102605572B publication Critical patent/CN102605572B/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Images

Landscapes

  • Sewing Machines And Sewing (AREA)

Abstract

本发明公开了具有传动结构的双针钉襻机,包括设置在机头并能上下运动的第一机针和第二机针,以及设置在机座内配合第一机针工作的第一旋梭和配合第二机针工作的第二旋梭。电机通过上轴、第一下轴和第二下轴,带动第一机针、第二机针、第一旋梭和第二旋梭协同工作,具有结构简单、便于安装维护的优点,并且第一机针和第二机针分别对应带襻的两端进行缝纫,大大提高了带襻加工效率。

Figure 201210095835

The invention discloses a double-needle loop nailing machine with a transmission structure, which includes a first machine needle and a second machine needle which are arranged on the machine head and can move up and down, and a first rotating needle which is arranged in the machine base and cooperates with the first machine needle to work. shuttle and the second hook that works with the second needle. The motor drives the first machine needle, the second machine needle, the first hook and the second hook to work together through the upper shaft, the first lower shaft and the second lower shaft. It has the advantages of simple structure and easy installation and maintenance. The first machine needle and the second machine needle respectively correspond to the two ends of the belt loop for sewing, which greatly improves the processing efficiency of the belt loop.

Figure 201210095835

Description

Crosspointer nail button loop machine with drive mechanism
Technical field
The present invention relates to a kind of Sewing machines for the processing belt button loop, specifically have the crosspointer nail button loop machine of drive mechanism.
Background technology
Utility model patent title: automatic band nailing machine, the patent No.: 200720110843.2 disclose a kind of automatic band nailing machine for the processing belt button loop, comprise sewing machine table, head of sewing machine is installed on the platen, be fixed with the feeding table widgets on the head, in the feeding table widgets programme controlled presser foot device by PLC be installed; On platen, also be equipped with by PLC programme controlledly turn, feed mechanism and starting switch, turning, be connected with again programme controlled material cutting mechanism by PLC on the feed mechanism.Presser foot device comprises with fixed block and is installed in holder on the Sewing machines feeding table widgets, this holder is provided with and its fixing presser feet support, the presser feet support is provided with two presser slide block that are installed in respectively on two take-up housings, in two presser slide block, be respectively equipped with again to be driven simultaneously by the first cylinder and carry out upper and lower two presser feets that are synchronized with the movement, have the presser feet groove on the presser feet, be provided with the first presser feet base plate, the second presser feet base plate of placing for the band button loop and the material blocking block that band button loop sewing position is positioned under the corresponding presser feet.Be respectively equipped with on the first presser feet base plate and the second presser feet base plate and the presser feet groove hole of sewing accordingly, turn, the head of feed mechanism is provided with and is installed in respectively two four-cylinder and the 5th cylinders on the air cylinder support, also is provided with waste material air blowing assembly on the air cylinder support of four-cylinder.This automatic band nailing machine can be realized the automatic sewing processing with button loop, but its operating efficiency is still waiting to improve.
Summary of the invention
Technical problem to be solved by this invention is for above-mentioned prior art present situation, and provide a kind of crosspointer that has efficiently drive mechanism simple in structure to follow closely the button loop machine, be used as power by a motor, realize the collaborative work of the first eedle and the first rotating shuttle and the second eedle and the second rotating shuttle.
The present invention solves the problems of the technologies described above the technical scheme that adopts: the crosspointer nail button loop machine with drive mechanism, comprise support and head, head is provided with the first eedle and second eedle that can move up and down, and is provided with the first rotating shuttle that cooperates the first eedle work and the second rotating shuttle that cooperates the second eedle work in the support; The first eedle, the second eedle, the first rotating shuttle and the second rotating shuttle are by same motor-driven work.
For optimizing technique scheme, the present invention also comprises following improved technical scheme.
Above-mentioned motor is connected with revolvable upper axle, and upper axle drives the first eedle by drive mechanism and the second eedle moves up and down.
Be provided with for the first lower shaft that drives the first rotating shuttle reciprocating rotary work in the above-mentioned support and be used for the second lower shaft of the second rotating shuttle reciprocating rotary work that drives; The first lower shaft and the second lower shaft are by drive mechanism and the interlock of upper axle.
The first above-mentioned eedle and the second eedle are arranged on the eedle seat that can move up and down; Upper axle is fixedly connected with the eedle crank, and the eedle crank is connected with the eedle bent axle, and an end and the eedle crank of eedle connecting rod are rotationally connected, and the other end is used for the driving machine needle stand and moves up and down.
Above-mentioned eedle bent axle and an end of thread take-up tension lever are rotatably assorted, and the other end of thread take-up tension lever is shaped with through wires hole; Be provided with the thread take-up tension lever back shaft that can rotate in the head, the movable end of thread take-up tension lever back shaft and the middle part of thread take-up tension lever are rotationally connected.
The first above-mentioned lower shaft is by Timing Belt and the interlock of upper axle, and the first lower shaft is connected with for the rotating shuttle crank transmission structure that drives the first rotating shuttle reciprocating rotary.
Above-mentioned rotating shuttle crank transmission structure comprises the rotating shuttle crank that is connected with the first lower shaft, and the rotating shuttle crank is connected with wobble crank by the rotating shuttle connecting rod, and wobble crank is connected with for the swinging axle that drives the first rotating shuttle reciprocating rotary.
The first above-mentioned rotating shuttle is connected with the rotating shuttle driving shaft, and the rotating shuttle driving shaft cooperates interlock by gear with the swinging axle of energy crankmotion.
The second above-mentioned lower shaft is connected with the second rotating shuttle; Upper axle is shaped with for the crank portion that drives the motion of the second lower shaft, and crank portion is connected with the lower shaft connecting rod, and the lower shaft connecting rod is connected with the lower shaft crank of making crankmotion for drive the second lower shaft.
Be provided with the lower shaft drive rod in the above-mentioned support, the lower shaft crank is fixedly connected with the lower shaft drive rod, and the lower shaft drive rod drives the second lower shaft by lower shaft gear and makes crankmotion.
Compared with prior art, crosspointer nail button loop machine with drive mechanism of the present invention, comprise the first eedle and the second eedle that are arranged on head and can move up and down, and be arranged on the first rotating shuttle that cooperates the first eedle work in the support and the second rotating shuttle that cooperates the second eedle work.Motor is by upper axle, the first lower shaft and the second lower shaft, drive the first eedle, the second eedle, the first rotating shuttle and the second rotating shuttle collaborative work, have advantages of simple in structure, be convenient to installation and maintenance, and the first eedle and the second eedle respectively two ends of corresponding band button loop are sewed, and have greatly improved band button loop working (machining) efficiency.
Description of drawings
Fig. 1 is the perspective view of the embodiment of the invention.
Fig. 2 is the side structure schematic diagram of Fig. 1.
Fig. 3 is the internal structure schematic diagram of Fig. 1.
Fig. 4 is the internal structure schematic diagram of Fig. 2.
Fig. 5 is the structural representation of drive mechanism among Fig. 3.
Fig. 6 is the front portion structure schematic diagram of Fig. 5.
Fig. 7 is the assembling decomposing schematic representation of Fig. 5.
Fig. 8 is the drive mechanism schematic diagram of the first lower shaft among Fig. 7.
Fig. 9 is the structural representation of the first needle plate and the second needle plate among Fig. 7.
Figure 10 is the structural representation of feeding structure among Fig. 3.
Figure 11 is the assembling decomposing schematic representation of Figure 10.
Figure 12 is the structural representation of the first rotating shuttle governor motion among Fig. 3.
Figure 13 is the assembling decomposing schematic representation of Figure 12.
The specific embodiment
Below in conjunction with accompanying drawing embodiments of the invention are described in further detail.
Fig. 1 is to Figure 13 shows that structural representation of the present invention.
Reference numeral wherein is: support 1, the first rotating shuttle 11, the second rotating shuttle 12, rotating shuttle seat 13, rotating shuttle driving shaft 16, swinging axle 17, wobble crank 17a, spring bearing 18, head 2, the first eedle 21, the second eedle 22, the first presser feet 23, pressure foot 23a, presser feet cylinder 23b, the second presser feet 24, eedle seat 25, presser feet position adjustment part 26, shank 27, eedle guide rail 28, motor 3, upper axle 31, eedle crank 31a, eedle connecting rod 31b, driving cam 31c, eedle bent axle 31d, crank portion 31e, the first lower shaft 32, synchronizing wheel 32a, rotating shuttle crank 32b, rotating shuttle connecting rod 32c, the second lower shaft 33, thread take-up tension lever 34, thread take-up tension lever back shaft 35, lower shaft drive rod 36, lower shaft crank 36a, lower shaft gear 36b, lower shaft connecting rod 38, Timing Belt 39, the first needle plate 41, the second needle plate 42, delivery sheet 5, pedestal 50, the first slide block 51, the first driver slot 51a, the first motor 511, the first feeding bogie 512, feeding tooth 513, the first driving shaft 514, the second slide block 52, the second driver slot 52a, the second motor 521, the second feeding bogie 522, motor feeding rod 523, the second driving shaft 524, presser feet arm 53, limit mounting support 54, limiting plate 55, adjusting rod 60, carriage 61, driving arm 62, the axis of guide 63, ball screw 64, rotating shuttle regulating electric machine 65, carriage rail 66, the first stationary knife 71, the first moving knife 72, first connecting rod 73, the first trimming drives cylinder 74, driving spring 80, trimming back shaft 801, the second stationary knife 81, the second moving knife 82, electromagnetic valve 83, drive rod 84, roller 84a, drive link 85, connecting rod 86, back-moving spring 87, tangent line lever 88, back shaft 88a, bearing pin 88b, drive link seat 89, the first pipeline purging device 91, the second pipeline purging device 92.
As shown in Figures 1 to 4, crosspointer nail button loop machine of the present invention comprises support 1 and head 2.
Be provided with for the first eedle 21 and the second eedle 22 of making respectively band button loop two ends at head 2.When making, the first eedle 21 and the second eedle 22 are sewed to the two ends of band button loop simultaneously, have greatly improved operating efficiency.
In support 1, be provided with for the first rotating shuttle 11 that cooperates 21 work of the first eedle with for the second rotating shuttle 12 that cooperates 22 work of the second eedle.Because the first eedle 21 and the second eedle 22 adopt respectively the rotating shuttle structure of the first rotating shuttle 11 and the second rotating shuttle 12 to match, when sewing, have advantages of high speed, low noise.
As shown in Figure 3 and Figure 4, the first eedle 21, the second eedle 22, the first rotating shuttle 11 and the second rotating shuttle 12 are by same motor 3 driving work, and whole drive mechanism is simple, are convenient to safeguard.
Between the first eedle 21 and the first rotating shuttle 11, and be provided with between described the second eedle 22 and the second rotating shuttle 12 for the delivery sheet 5 of placing material.Be provided with for the first presser feet 23 that cooperates delivery sheet 5 in the first eedle 21 1 sides, be provided with for the second presser feet 24 that cooperates delivery sheet 5 in the second eedle 22 1 sides.The material that the first presser feet 23 and the second presser feet 24 can be made needs is pressed on the delivery sheet 5, makes material cooperate delivery sheet 5 motions.
Delivery sheet 5, the first presser feet 23 and the second presser feet 24 are connected with the second slide block 52 for moving feeding.The second slide block 52 be fitted with can with the first slide block 51 of the second slide block 52 relative motions.The first slide block 51 connects the first motor 511 that is used for driving feeding.The second slide block 52 connects the second motor 521 that is used for driving feeding.
Fig. 5 and shown in Figure 6 be the drive mechanism of crosspointer nail button loop machine, comprise the first eedle 21 and the second eedle 22 that are arranged on head 2 and can move up and down, and be arranged on the first rotating shuttle 11 of support 1 interior cooperation the first eedle 21 work and the second rotating shuttle 12 that cooperates the second eedle 22 to work.
Afterbody installation at head 2 is provided with motor 3, and motor 3 is connected with revolvable upper axle 31, axle 31 rotary works in the driving.The front end of upper axle 31 drives the first eedle 21 by drive mechanism and the second eedle 22 moves up and down.
In the present embodiment, the first eedle 21 and the second eedle 22 are arranged on the eedle seat 25 that can move up and down, and eedle seat 25 is fixed with shank 27.In head 2, be provided with the eedle guide rail 28 that moves up and down for vectoring aircraft needle stand 25.Also be provided with the first pipeline purging device 91 and the second pipeline purging device 92 for pipeline purging in the both sides of the first eedle 21 and the second eedle 22.The first pipeline purging device 91 and the second pipeline purging device 92 comprise the pipeline purging cylinder and by the pipeline purging bar of pipeline purging air cylinder driven, pipeline purging cylinder action when sewing finishes, and the pipeline purging bar is pulled out certain amount with upper thread, discharges the tension force on the upper thread, is convenient to trimming.
The front end of upper axle 31 is fixedly connected with eedle crank 31a, and described eedle crank 31a is connected with eedle bent axle 31d, and the end of eedle connecting rod 31b and eedle crank 31a are rotationally connected, and the other end is used for driving machine needle stand 25 and moves up and down.When upper axle 31 rotated, eedle connecting rod 31b was subject to the guiding of eedle guide rail 28, drove eedle seat 25 and moved up and down.
As shown in Figure 6 and Figure 7, the lower end of eedle bent axle 31d and thread take-up tension lever 34 is rotatably assorted, and the other end of thread take-up tension lever 34 is shaped with through wires hole.Be provided with the thread take-up tension lever back shaft 35 that can rotate in the head 2, the middle part of the movable end of thread take-up tension lever back shaft 35 and thread take-up tension lever 34 is rotationally connected.When upper axle 31 rotation work, eedle bent axle 31d just drives thread take-up tension lever 34 work.
As shown in Figure 5, in support 1, be provided with for the first lower shaft 32 that drives the 11 reciprocating rotary work of the first rotating shuttle with for the second lower shaft 33 that drives the 12 reciprocating rotary work of the second rotating shuttle.The first lower shaft 32 and the second lower shaft 33 are by drive mechanism and 31 interlocks of described upper axle.
In the present embodiment, the first lower shaft 32 is by Timing Belt 39 and described upper axle 31 interlocks, and Timing Belt 39 drives the first lower shaft 32 rotates when upper axle 31 rotates.The front end of the first lower shaft 32 is connected with for the rotating shuttle crank transmission structure that drives the first rotating shuttle 11 reciprocating rotaries.
The rotating shuttle crank transmission structure comprises the rotating shuttle crank 32b that is connected with the first lower shaft 32, described rotating shuttle crank 32b is connected with wobble crank 17a by rotating shuttle connecting rod 32c, and described wobble crank 17a is connected with for the swinging axle 17 that drives the first rotating shuttle 11 reciprocating rotaries.
The first rotating shuttle 11 is connected with rotating shuttle driving shaft 16, and rotating shuttle driving shaft 16 cooperates interlock by gear with the swinging axle 17 of energy crankmotion.When the first lower shaft 32 rotary work, the first rotating shuttle 11 just can reciprocating rotary work.
The second lower shaft 33 is connected with the second rotating shuttle 12.In the present embodiment, upper axle 31 is shaped with for the crank portion 31e that drives 33 motions of the second lower shaft, and crank portion 31e is connected with lower shaft connecting rod 38.Lower shaft connecting rod 38 is connected with the lower shaft crank 36a that makes crankmotion for drive the second lower shaft 33.Be provided with lower shaft drive rod 36 in support 1, lower shaft crank 36a is fixedly connected with lower shaft drive rod 36, and lower shaft drive rod 36 drives the second lower shaft 33 by lower shaft gear 36b and makes crankmotion.
As shown in Figure 3 and Figure 4, crosspointer nail button loop machine of the present invention, the first rotating shuttle 11 is connected with for the governor motion of regulating distance between the first rotating shuttle 11 and the second rotating shuttle 12, can regulate distance between the first rotating shuttle 11 and the second rotating shuttle 12 by governor motion, to adapt to the different bands length of fastening with a rope, string, etc.
Such as Figure 12 and shown in Figure 13, in the present embodiment, governor motion comprises carriage 61, the adjusting rod 60 that is connected with described carriage 61 that is movably set in the support 1 and the adjusting driving mechanism that is connected with adjusting rod 60.Regulating driving mechanism comprises for the rotating shuttle regulating electric machine 65 that drives adjusting rod 60 axially-movables.
Being fixedly installed rotating shuttle seat 13, the first rotating shuttles 11 that are useful on installation the first rotating shuttle 11 on the carriage 61 is rotatably assorted with rotating shuttle seat 13.The rotating shuttle driving shaft 16 that is connected with the first rotating shuttle 11, be used for to drive the swinging axle 17 of rotating shuttle driving shaft 16, and be connected with the first lower shaft 32 and the rotating shuttle crank 32b that is used for driving swinging axle 17 crankmotions installs with rotating shuttle seat 13 respectively and cooperates.Swinging axle 17 is fixedly connected with wobble crank 17a, is connected with rotating shuttle connecting rod 32c between rotating shuttle crank 32b and the wobble crank 17a.The first lower shaft 32 drives swinging axle 17 crankmotions by rotating shuttle crank 32b, and swinging axle 17 is made crankmotion by gear driven rotating shuttle driving shaft 16.
Adjusting rod 60 is connected with driving arm 62, and described driving arm 62 slides and is arranged on the axis of guide 63 in the support 1.Rotating shuttle regulating electric machine 65 is connected with for the ball screw 64 that drives driving arm 62 motions.Be provided with for the carriage rail 66 that leads in the bottom of carriage 61,65 work of rotating shuttle regulating electric machine drive carriages 61 by adjusting rod 60 and move along carriage rail 66.
The first rotating shuttle 11 and the rotating shuttle crank transmission structure that be used for to drive the first rotating shuttle 11 reciprocating rotaries by rotating shuttle seat 13 integrated installations at carriage 61, by rotating shuttle regulating electric machine 65 work, just can regulate distance between the first rotating shuttle 11 and the second rotating shuttle 12 with the fasten with a rope, string, etc. length at two ends of adaptive zone.
In the present embodiment, the first lower shaft 32 is splined shaft, and an end of the first lower shaft 32 is connected with rotating shuttle crank 32b, and the spring bearing 18 in the other end and the support 1 matches.Be provided with for the synchronizing wheel 32a that drives 32 rotations of the first lower shaft at described the first lower shaft 32, the first lower shaft 32 and described synchronizing wheel 32a and spring bearing 18 axial sliding fits, to adapt to the change of the first rotating shuttle 11 positions, be convenient to regulate the distance between the first rotating shuttle 11 and the second rotating shuttle 12.
As shown in Figure 9, be provided with the first needle plate 41 on the rotating shuttle seat 13.The bottom of the first needle plate 41 is provided with the first thread cutter.The first thread cutter comprises the first stationary knife 71 and the first moving knife 72.The first moving knife 72 connects the first trimming driving cylinder 74 by the first connecting rod 73 that is arranged in the rotating shuttle seat 13.The first trimming drives cylinder 74 and is arranged on the carriage 61.The first needle plate 41, the first thread cutter can be with carriage 61 motions.
Above the second rotating shuttle 12, be provided with the second needle plate 42.The second needle plate 42 bottoms are provided with the second thread cutter.Distance between the first needle plate 41 and the second needle plate 42 is regulated by rotating shuttle regulating electric machine 65.
As shown in Figure 7, upper axle 31 is provided with for the driving cam 31c that drives the second moving knife 82.The second moving knife 82 is connected with the drive rod 84 that can cooperate with driving cam 31c with disengaging movement.When drive rod 84 matched with driving cam 31c, driving cam 31c drove the second moving knife 82 trimmings.
Drive rod 84 is connected with for control drive rod 84 and cooperates gauge tap with disengaging movement with driving cam 31c.Gauge tap is provided with the push rod that carries out routing motion for control drive rod 84 and driving cam 31c.In the present embodiment, gauge tap is electromagnetic valve 83.
As shown in Figure 9, drive rod 84 is connected with the driving spring 80 that carries out disengaging movement for driving drive rod 84 and driving cam 31c.
Drive rod 84 is slidingly arranged on the trimming back shaft 801, and driving spring 80 is sheathed on the trimming back shaft 801; Be provided with for the roller 84a that cooperates driving cam 31c at drive rod 84.Drive rod 84 moves to driving cam 31c along trimming back shaft 801 under the push rod effect, and roller 84a is matched with the cam path of driving cam 31c.
Be connected with transmission component between drive rod 84 and the second moving knife 82.Transmission component comprises drive link seat 89 and the tangent line lever 88 that matches.Drive link seat 89 is connected with the connecting rod 86 with drive rod 84 interlocks, and tangent line lever 88 is connected with the drive link 85 that is connected with the second moving knife 82.
Movable end and the connecting rod 86 of drive link seat 89 are rotationally connected, and another movable end matches with bearing pin 88b on the tangent line lever 88, and bearing pin 88b is connected with back-moving spring 87.
When drive rod 84 close driving cam 31c, connecting rod 86 is take drive link seat 89 as support rotating.Drive rod 84 is with after driving cam 31c matches, and connecting rod 86 can axially-movable, and drives drive links 85 motions by tangent line lever 88, makes drive link 85 drive the second moving knife 82 trimmings.
As shown in Figure 10 and Figure 11, the feeding structure of crosspointer nail button loop machine comprises the first presser feet 23, the second presser feet 24 and delivery sheet 5.Slide block travel mechanism comprises the first slide block 51 and the second slide block 52 that moves at in-plane for driving delivery sheet 5, the first presser feet 23 and the second presser feet 24.
The first slide block 51 slides and is arranged on the pedestal 50, and described the second slide block 52 slides and is arranged on the first slide block 51, and the glide direction of the glide direction of the second slide block 52 and the first slide block 51 is perpendicular.Like this, delivery sheet 5, the first presser feet 23 and the second presser feet 24 can move respectively in directions X and the Y-direction on plane.
The first slide block 51 is connected with for the first motor 511, the second slide blocks 52 that drive 51 slips of the first slide block and is connected with the second motor 521 that slides for driving the second slide block 52.
The first presser feet 23 and the second presser feet 24 are separately positioned on the presser feet arm 53.Presser feet arm 53 is connected with the second slide block 52 respectively with delivery sheet 5.When 52 motion of the second slide block, the first presser feet 23 and the second presser feet 24 cooperate delivery sheet 5 to move together.
The first presser feet 23 and the second presser feet 24 comprise respectively pressure foot 23a and are used for driving the presser feet cylinder 23b that pressure foot 23a moves up and down.
Presser feet arm 53 is provided with for presser feet position adjustment part 26, the first presser feets 23 of regulating distance between the first presser feet 23 and the second presser feet 24 and matches with the adjusting position of presser feet position adjustment part 26.The first presser feet 23 can be regulated by fixture easily with the fixed position of presser feet position adjustment part 26, to adapt to the length of different band button loop.
Be equipped with for the limit mounting support 54 and the limiting plate 55 that cooperate material on the delivery sheet 5 at the second slide block 52.When the work beginning, material is delivered on the delivery sheet 5 of crosspointer nail button loop machine by feed mechanism first, by the limit mounting support 54 on the delivery sheet 5 and limiting plate 55, band button loop sewing position is positioned, and makes material be positioned at suitable sewing position.
The first slide block 51 is shaped with the first driver slot 51a, and the first motor 511 is connected with the first feeding bogie 512.The first feeding bogie 512 is shaped with feeding tooth 513, the first motors 511 that match with the first motor 511 and moves by gear driven the first feeding bogie 512.As shown in figure 11, the first driver slot 51a is sagittal elongated slot, and the first feeding bogie 512 is provided with the first driving shaft 514 that matches with the first driver slot 51a.When 511 work of the first motor, the first driving shaft 514 of the first feeding bogie 512 just can drive the first slide block 51 along its guide rail transverse movement.
The second slide block 52 is provided with the second driver slot 52a, and the motor feeding rod 523 of the second motor 521 by can axially-movable is connected with the second feeding bogie 522, the second feeding bogies 522 and is shaped with the second driving shaft 524 that matches with the second driver slot 52a.As shown in figure 11, the second driver slot 52a is horizontal elongated slot, and motor feeding rod 523 is along front and back to setting, and the second driving shaft 524 by the second feeding bogie 522 drives the second slide block 52 and moves upward in front and back along its guide rail.
Most preferred embodiment of the present invention is illustrated, and various variations or the remodeling made by those of ordinary skills can not depart from the scope of the present invention.

Claims (6)

1. the crosspointer nail button loop machine that has drive mechanism, comprise support (1) and head (2), it is characterized in that: described head (2) is provided with the first eedle (21) and second eedle (22) that can move up and down, and is provided with the first rotating shuttle (11) that cooperates the first eedle (21) work and the second rotating shuttle (12) that cooperates the second eedle (22) work in the described support (1); Described the first eedle (21), the second eedle (22), the first rotating shuttle (11) and the second rotating shuttle (12) are by same motor (3) driving work; Described motor (3) is connected with revolvable upper axle (31), and described upper axle (31) drives described the first eedle (21) by drive mechanism and the second eedle (22) moves up and down; Be provided with in the described support (1) for the first lower shaft (32) that drives the first rotating shuttle (11) reciprocating rotary work with for the second lower shaft (33) that drives the second rotating shuttle (12) reciprocating rotary work; Described the first lower shaft (32) and the second lower shaft (33) are by drive mechanism and described upper axle (31) interlock; Described the first lower shaft (32) is by Timing Belt (39) and described upper axle (31) interlock, and the first lower shaft (32) is connected with for the rotating shuttle crank transmission structure that drives the first rotating shuttle (11) reciprocating rotary; Described rotating shuttle crank transmission structure comprises the rotating shuttle crank (32b) that is connected with the first lower shaft (32), described rotating shuttle crank (32b) is connected with wobble crank (17a) by rotating shuttle connecting rod (32c), and described wobble crank (17a) is connected with for the swinging axle (17) that drives the first rotating shuttle (11) reciprocating rotary; Described the first lower shaft (32) is splined shaft, and an end of the first lower shaft (32) is connected with rotating shuttle crank (32b), and the spring bearing (18) in the other end and the support (1) matches; Be provided with for the synchronizing wheel (32a) that drives the first lower shaft (32) rotation at described the first lower shaft (32), described the first lower shaft (32) and described synchronizing wheel (32a) and spring bearing (18) axial sliding fit, to adapt to the change of the first rotating shuttle (11) position, be convenient to regulate the distance between the first rotating shuttle (11) and the second rotating shuttle (12); Described upper axle (31) is provided with for the driving cam (31c) that drives the second moving knife (82), the second moving knife (82) is connected with the drive rod (84) that can cooperate with driving cam (31c) with disengaging movement, drive rod (84) and driving cam (31c) are when matching, and driving cam (31c) drives the second moving knife (82) trimming.
2. the crosspointer with drive mechanism according to claim 1 is followed closely the button loop machine, and it is characterized in that: described the first eedle (21) and the second eedle (22) are arranged on the eedle seat (25) that can move up and down; Described upper axle (31) is fixedly connected with eedle crank (31a), described eedle crank (31a) is connected with eedle bent axle (31d), one end of eedle connecting rod (31b) and described eedle crank (31a) are rotationally connected, and the other end is used for driving machine needle stand (25) and moves up and down.
3. the crosspointer with drive mechanism according to claim 2 is followed closely the button loop machine, it is characterized in that: described eedle bent axle (31d) is rotatably assorted with an end of thread take-up tension lever (34), and the other end of thread take-up tension lever (34) is shaped with through wires hole; Be provided with the thread take-up tension lever back shaft (35) that can rotate in the described head (2), the middle part of the movable end of described thread take-up tension lever back shaft (35) and thread take-up tension lever (34) is rotationally connected.
4. the crosspointer with drive mechanism according to claim 3 is followed closely the button loop machine, it is characterized in that: described the first rotating shuttle (11) is connected with rotating shuttle driving shaft (16), and described rotating shuttle driving shaft (16) cooperates interlock by gear with the swinging axle (17) of energy crankmotion.
5. the crosspointer with drive mechanism according to claim 4 is followed closely the button loop machine, and it is characterized in that: described the second lower shaft (33) is connected with the second rotating shuttle (12); Described upper axle (31) is shaped with for the crank portion (31e) that drives the second lower shaft (33) motion, described crank portion (31e) is connected with lower shaft connecting rod (38), and described lower shaft connecting rod (38) is connected with the lower shaft crank (36a) of making crankmotion for drive the second lower shaft (33).
6. the crosspointer with drive mechanism according to claim 5 is followed closely the button loop machine, it is characterized in that: be provided with lower shaft drive rod (36) in the described support (1), described lower shaft crank (36a) is fixedly connected with lower shaft drive rod (36), and described lower shaft drive rod (36) drives the second lower shaft (33) by lower shaft gear (36b) and makes crankmotion.
CN 201210095835 2012-04-05 2012-04-05 Double-needle loop nailing machine with transmission structure Expired - Fee Related CN102605572B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN 201210095835 CN102605572B (en) 2012-04-05 2012-04-05 Double-needle loop nailing machine with transmission structure

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN 201210095835 CN102605572B (en) 2012-04-05 2012-04-05 Double-needle loop nailing machine with transmission structure

Publications (2)

Publication Number Publication Date
CN102605572A CN102605572A (en) 2012-07-25
CN102605572B true CN102605572B (en) 2013-04-17

Family

ID=46523310

Family Applications (1)

Application Number Title Priority Date Filing Date
CN 201210095835 Expired - Fee Related CN102605572B (en) 2012-04-05 2012-04-05 Double-needle loop nailing machine with transmission structure

Country Status (1)

Country Link
CN (1) CN102605572B (en)

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109652930B (en) * 2019-01-21 2021-07-13 杰克缝纫机股份有限公司 A needle position adjusting mechanism of a double needle machine and a sewing machine

Citations (11)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH06246080A (en) 1993-02-26 1994-09-06 Gunze Ltd Method of sewing tape-like cloth
EP0697480A1 (en) * 1994-08-19 1996-02-21 Hams Corporation Method of folding opposite ends of a piece of tape and apparatus for effecting same
JPH10113484A (en) 1996-10-11 1998-05-06 Juki Corp Belt loop sewing machine
CN1107755C (en) * 1997-11-25 2003-05-07 重机株式会社 Two-needle sewing machine
CN2763315Y (en) * 2005-02-01 2006-03-08 上海日野工业缝纫机有限公司 Machine for flat-seaming and sewing trousers loop
JP3890255B2 (en) * 2002-05-13 2007-03-07 株式会社森本製作所 Auxiliary presser device in sewing machine for making double chain stitch band
CN101046036A (en) * 2007-04-16 2007-10-03 中捷缝纫机股份有限公司 Interlinking mechanism for presser of belt loop sewing machine
CN101629362A (en) * 2009-08-10 2010-01-20 浙江宝石缝纫机股份有限公司 Novel pants headset front feeding mechanism
JP2010125268A (en) * 2008-12-01 2010-06-10 Juki Corp Loop material supply device and control method for the same
CN201648706U (en) * 2010-01-13 2010-11-24 麻佰林 Intelligent lug machine
CN102373583A (en) * 2010-08-17 2012-03-14 上海贵衣缝纫设备有限公司 Belt conveying mechanism of automatic trouser-loop machine

Patent Citations (11)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH06246080A (en) 1993-02-26 1994-09-06 Gunze Ltd Method of sewing tape-like cloth
EP0697480A1 (en) * 1994-08-19 1996-02-21 Hams Corporation Method of folding opposite ends of a piece of tape and apparatus for effecting same
JPH10113484A (en) 1996-10-11 1998-05-06 Juki Corp Belt loop sewing machine
CN1107755C (en) * 1997-11-25 2003-05-07 重机株式会社 Two-needle sewing machine
JP3890255B2 (en) * 2002-05-13 2007-03-07 株式会社森本製作所 Auxiliary presser device in sewing machine for making double chain stitch band
CN2763315Y (en) * 2005-02-01 2006-03-08 上海日野工业缝纫机有限公司 Machine for flat-seaming and sewing trousers loop
CN101046036A (en) * 2007-04-16 2007-10-03 中捷缝纫机股份有限公司 Interlinking mechanism for presser of belt loop sewing machine
JP2010125268A (en) * 2008-12-01 2010-06-10 Juki Corp Loop material supply device and control method for the same
CN101629362A (en) * 2009-08-10 2010-01-20 浙江宝石缝纫机股份有限公司 Novel pants headset front feeding mechanism
CN201648706U (en) * 2010-01-13 2010-11-24 麻佰林 Intelligent lug machine
CN102373583A (en) * 2010-08-17 2012-03-14 上海贵衣缝纫设备有限公司 Belt conveying mechanism of automatic trouser-loop machine

Also Published As

Publication number Publication date
CN102605572A (en) 2012-07-25

Similar Documents

Publication Publication Date Title
CN102605560B (en) Double-needle belt loop sewing machine with position-adjustable rotating shutters
CN202559050U (en) Double-needle loop sewing machine
CN107217402B (en) Cutter structure of sewing machine
JP6108742B2 (en) Buttonhole sewing machine
CN200952072Y (en) Linear hosiery toe sewing machine
KR101916593B1 (en) Thread trimmer of post-bed sewing machine
CN102605571B (en) Double-needle loop sewing machine with thread cutting structure
CN106948101B (en) Feeding mechanism and sewing machine
CN103161038A (en) Ribbon loom
ATE542940T1 (en) SEWING MACHINE
CN102605561B (en) Double-needle belt loop sewing machine
CN202559073U (en) Needle plate thread cutting structure of double-needle loop sewing machine
CN102605572B (en) Double-needle loop nailing machine with transmission structure
CN203846247U (en) Automatic extending arm rotating type individual-drive sewing device
CN102619027B (en) Double-needle loop sewing machine with feeding structure
CN202559070U (en) Rotating shuttle structure for double-needle band nailing machine
CN202559053U (en) Feeding structure of double-needle band nailing machine
CN202559078U (en) Needle plate structure of double-needle loop sewing machine
CN202347254U (en) Cutter device of binding loop machine
CN202559075U (en) Transmission structure of double-needle nail loop attaching machine
CN202559072U (en) Rotating hook structure
CN102002826B (en) Sewing machine
CN110318180B (en) Gold sheet, lamination and tube bead integrated device of computerized embroidery machine
CN205046329U (en) Sewing machine's thread trimming mechanism
KR20030069862A (en) Sewing machine

Legal Events

Date Code Title Description
C06 Publication
PB01 Publication
C10 Entry into substantive examination
SE01 Entry into force of request for substantive examination
C14 Grant of patent or utility model
GR01 Patent grant
C41 Transfer of patent application or patent right or utility model
TR01 Transfer of patent right

Effective date of registration: 20161012

Address after: 315100 Zhejiang city of Ningbo province Yinzhou District Jingu Road No. 219

Patentee after: NINGBO SUPREME ELECTRONIC MACHINERY Inc.

Address before: 315100 No. 528 Jin Yuan Road, Yinzhou investment center, Ningbo, Zhejiang, Yinzhou District

Patentee before: NINGBO SUPREME ELECTRONIC MACHINERY Co.,Ltd.

CP01 Change in the name or title of a patent holder
CP01 Change in the name or title of a patent holder

Address after: No.219, Jingu North Road, Yinzhou District, Ningbo City, Zhejiang Province, 315100

Patentee after: Shupu Intelligent Technology Co.,Ltd.

Address before: No.219, Jingu North Road, Yinzhou District, Ningbo City, Zhejiang Province, 315100

Patentee before: NINGBO SUPREME ELECTRONIC MACHINERY Inc.

CF01 Termination of patent right due to non-payment of annual fee
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20130417