CN204509661U - A kind of numerical control industrial sewing machine - Google Patents

A kind of numerical control industrial sewing machine Download PDF

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Publication number
CN204509661U
CN204509661U CN201520056124.1U CN201520056124U CN204509661U CN 204509661 U CN204509661 U CN 204509661U CN 201520056124 U CN201520056124 U CN 201520056124U CN 204509661 U CN204509661 U CN 204509661U
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CN
China
Prior art keywords
sub
folder tool
plate
chuck body
pressing plate
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Expired - Fee Related
Application number
CN201520056124.1U
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Chinese (zh)
Inventor
罗秋开
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Hunan Tian Heng Articles For Children Ltd Co
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Hunan Tian Heng Articles For Children Ltd Co
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Priority to CN201520056124.1U priority Critical patent/CN204509661U/en
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Expired - Fee Related legal-status Critical Current
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Abstract

The utility model provides a kind of numerical control industrial sewing machine, relate to technical field of sewing equipment, it comprises support, head, working plate and fixture, fixture comprises at least two sub-fixtures and a chuck body, the rear end of chuck body is connected with horizontal drive apparatus, the front end of chuck body offers sub-folder tool accommodating cavity, the top sides of sub-folder tool accommodating cavity is along being provided with flange, the upper surface of chuck body is hinged with a pair plate hook, plate hook is located at the left and right sides of sub-folder tool accommodating cavity, sub-folder tool comprises one piece of clamping plate and a pair spacer pin, the middle part of clamping plate is provided with material positioning chamber, spacer pin is located at the left and right sides of material positioning chamber and is connected with the upper surface of clamping plate, the upper surface of clamping plate is provided with the first pressing plate, the middle part of the first pressing plate offers makes window, the lower surface of the first pressing plate is provided with at least two guide positioning pins made of iron, clamping plate are provided with locating hole, magnet is provided with in locating hole, the tail end of plate hook is hinged with driving cylinder, cylinder is driven to be installed in chuck body.

Description

A kind of numerical control industrial sewing machine
Technical field
The utility model relates to technical field of sewing equipment, particularly a kind of numerical control industrial sewing machine.
Background technology
Along with the raising of China's manufacturing industry human cost, increasing clothes and down toy manufacturing enterprise select the higher computer sewing machine (numerical control industrial sewing machine) of automaticity to carry out quilt, at present, the structure of the sewing fixture of the computer sewing machine sold on the market is general as shown in Figure 1, it comprises support (support is not shown in fig. 1), be located at the head above support, working plate, fixture and the horizontal drive apparatus for driving fixture to move at horizontal plane all around, fixture is located at the top of working plate, fixture comprises one piece of middle part positioning splint 8 of material positioning chamber and a piece be provided with for locating material of waiting to sew and is located at the second pressing plate 5 for pushing down material of waiting to sew above positioning splint 8, positioning splint 8 is connected with the horizontal drive apparatus (horizontal drive apparatus is not shown in fig. 1) driving positioning splint 8 at horizontal in-plane moving, pressing plate 5 is connected with by a connecting rod 6 vertical drive (vertical drive is not shown in fig. 1) that driving second pressing plate 5 moves up and down.Although traditional industrial sewing machine compared by this computer sewing machine have higher automatization level, but also there is following problem in it: because material positioning chamber is located on positioning splint 8, and positioning splint 8 is fixedly connected on horizontal drive apparatus, therefore, operating personnel need first to be stopped by sewing machine when picking and placeing material, then in material positioning chamber, the material of having sewed is taken out, finally will treat that material positioning chamber put into by sewing material again, effect is blocked due to pressing plate 5, particularly when material area is larger, the above-mentioned process picking and placeing material is consuming time longer, equipment is long for down time, therefore adopt the production efficiency of above-mentioned computer sewing machine not high enough.
Summary of the invention
The technical problems to be solved in the utility model is to provide the high numerical control industrial sewing machine of a kind of production efficiency.
In order to solve the problems of the technologies described above, the utility model adopts following technical scheme: a kind of numerical control industrial sewing machine, comprise support, be located at the head above described support, working plate, fixture and for driving the horizontal drive apparatus of described fixture horizontal movement, described fixture is located at the top of working plate, described fixture comprises the chuck body of at least two sub-fixtures and a tabular, the rear end of described chuck body is connected with horizontal drive apparatus, the front end of described chuck body offers sub-folder tool accommodating cavity, described sub-folder tool can be extracted out in sub-folder tool accommodating cavity, the top sides of described sub-folder tool accommodating cavity is along the flange being provided with a circle and up scurrying out in sub-folder tool accommodating cavity for preventing sub-folder tool, the upper surface of described chuck body is hinged with a pair for preventing sub-folder tool at the plate hook of " L " shape of the accommodating lumenal levels play of sub-folder tool, described plate hook is located at the left and right sides of sub-folder tool accommodating cavity, described sub-folder tool comprises the clamping plate and a pair spacer pin that one piece of stainless steel makes, the middle part of described clamping plate is provided with material positioning chamber, described spacer pin is located at the left and right sides of material positioning chamber and is connected with the upper surface of clamping plate, the upper surface of described clamping plate is provided with the first pressing plate that a piece prevents from treating the stainless steel that sewing material is up scurried out in material positioning chamber, the middle part of described first pressing plate offers makes window, described size of making window is less than the size of material positioning chamber, the lower surface of described first pressing plate is provided with at least two guide positioning pins made of iron, described clamping plate are provided with the locating hole with described guide positioning pin respective amount, the magnet for holding guide positioning pin is provided with in described locating hole, the tail end of described plate hook is hinged with for driving it to rotate around the pin joint with chuck body thus realizing clamping or unclamping the driving cylinder of spacer pin, described driving cylinder is installed in chuck body.
Further, described numerical control industrial sewing machine also comprises one piece and is located at and waits the second pressing plate of material of sewing for pushing down in material positioning chamber above chuck body, the size of described second pressing plate is less than the size of making window, described second pressing plate push down in material positioning chamber wait sew material time, the gap can passed for sewing needle is there is between the lateral wall of the second pressing plate and the sidewall making window, described second pressing plate is connected with a connecting rod, and described connecting rod is connected with the vertical drive for driving the second pressing plate to move up and down.
Preferably, the front end of described clamping plate is provided with the handle being convenient to grasp, and described handle is bolted to connection the upper surface in clamping plate.
Further, described driving cylinder is pen type cylinder.
The numerical control industrial sewing machine that the utility model provides comprises chuck body and the plural sub-folder tool that can be separated with chuck body, and the method for operating of the computer sewing machine of the numerical control industrial sewing machine adopting the utility model to provide comprises the following steps:
The first step, to treat that the material positioning chamber on the clamping plate of sub-folder tool put into by sewing material, then sub-folder tool is inserted in the sub-folder tool accommodating cavity in chuck body, then start and drive cylinder, cylinder is driven to drive plate hook rotate around the pin joint of itself and chuck body thus tightly caught on by the spacer pin of sub-folder tool, now sewing needle down moves, and starts to make material.
Second step, while sewing needle is made material, operating personnel pick up second sub-fixture, second block of material to be sewed is put into the material positioning chamber on the clamping plate of the second sub-folder tool, after first block of material has been made, start and drive cylinder, now, cylinder is driven to drive plate hook rotate backward around the pin joint of itself and chuck body thus unclamped by the spacer pin of sub-folder tool, first sub-fixture is extracted out by operating personnel in sub-folder tool accommodating cavity, and waits to sew in the second sub-folder tool intron fixture accommodating cavity of material by putting well.
3rd step, starts and drives cylinder, and drive cylinder to drive plate hook rotate around the pin joint of itself and chuck body thus tightly caught on by the spacer pin of the second sub-folder tool, now sewing needle down moves, and starts to make material.
Above-mentioned steps is repeated again after completing the 3rd step.
The beneficial effect that the utility model obtains is: operating personnel can will treat while sewing machine is made that sub-folder tool put into by sewing material, whole making in process is only that sewing machine just needs to stop when picking and placeing sub-folder tool, the time expended owing to picking and placeing sub-folder tool is compared and in material positioning chamber, to place the time expended required for material of waiting to sew want much shorter, and the production efficiency of the sewing machine of the fixture therefore adopting the utility model to provide is very high.
Accompanying drawing explanation
Fig. 1 is the overall structure schematic diagram of the computer sewing machine in background technology;
Fig. 2 is overall structure schematic diagram of the present utility model;
Fig. 3 is the overall structure schematic diagram of the fixture in the utility model;
Fig. 4 is the structural representation of the chuck body in the utility model;
Fig. 5 is the sectional view in A-A direction in Fig. 4;
Fig. 6 is the overall structure schematic diagram of the sub-folder tool in the utility model;
Fig. 7 is the sectional view in A-A direction in Fig. 6;
Fig. 8 is the overall structure schematic diagram of the clamping plate in the utility model;
Fig. 9 is the overall structure schematic diagram of the first pressing plate in the utility model;
Figure 10 is the sectional view in A-A direction in Fig. 8;
Figure 11 is the sectional view in A-A direction in Fig. 9;
Reference numeral is: 1, and---------plate hook 4---drives cylinder 5---the second pressing plate 6---connecting rod 7---handle 8---positioning splint to chuck body 3 to sub-folder tool 2
11---clamping plate 12---spacer pin
13---first pressing plate 14---guide positioning pin
15------------material positioning chamber 112---locating hole 131---makes window to flange 111 to sub-folder tool accommodating cavity 22 to magnet 21.
Detailed description of the invention
For the ease of the understanding of those skilled in the art, be further described the utility model below in conjunction with embodiment and accompanying drawing, the content that embodiment is mentioned is not to restriction of the present utility model.
In description of the present utility model, it will be appreciated that, term " " center ", " longitudinal direction ", " transverse direction ", " length ", " width ", " thickness ", " on ", D score, " front ", " afterwards ", " left side ", " right side ", " vertically ", " level ", " top ", " end ", " interior ", " outward ", " clockwise ", orientation or the position relationship of the instruction such as " counterclockwise " are based on orientation shown in the drawings or position relationship, only the utility model and simplified characterization for convenience of description, instead of indicate or imply that the device of indication or element must have specific orientation, with specific azimuth configuration and operation, therefore can not be interpreted as restriction of the present utility model.
In addition, term " first ", " second " only for describing object, and can not be interpreted as instruction or hint relative importance or imply the quantity indicating indicated technical characteristic.Thus, be limited with " first ", the feature of " second " can express or impliedly comprise one or more these features.In describing the invention, the implication of " multiple " is two or more, unless otherwise expressly limited specifically.
As shown in figs. 2-9, a kind of numerical control industrial sewing machine, comprise support, be located at the head above support, working plate, fixture and for driving the horizontal drive apparatus of fixture horizontal movement, fixture is located at the top of working plate, above-mentioned fixture comprises the sub-folder tool 1 of at least two and the chuck body 2 of a tabular, the rear end of chuck body 2 is connected with horizontal drive apparatus (horizontal drive apparatus is not shown in the accompanying drawings), the front end of chuck body 2 offers sub-folder tool accommodating cavity 21, sub-folder tool 1 can be extracted out in sub-folder tool accommodating cavity 21, the top sides of sub-folder tool accommodating cavity 21 is along the flange 22 being provided with a circle and up scurrying out in sub-folder tool accommodating cavity 21 for preventing sub-folder tool 1, the upper surface of chuck body 2 is hinged with a pair for preventing the plate hook 3 of sub-folder tool 1 " L " shape of horizontal play in sub-folder tool accommodating cavity 21, plate hook 3 is located at the left and right sides of sub-folder tool accommodating cavity 21, sub-folder tool 1 comprises the clamping plate 11 and a pair spacer pin 12 that one piece of stainless steel makes, the middle part of clamping plate 11 is provided with material positioning chamber 111, spacer pin 12 is located at the left and right sides of material positioning chamber 111 and is connected with the upper surface of clamping plate 11, the upper surface of clamping plate 11 is provided with the first pressing plate 13 that a piece prevents from treating the stainless steel that sewing material is up scurried out in material positioning chamber 111, the middle part of the first pressing plate 13 offers makes window 131, described size of making window 131 is less than the size of material positioning chamber 111, the lower surface of the first pressing plate 13 is provided with at least two guide positioning pins 14 made of iron, clamping plate 11 are provided with the locating hole 112 with guide positioning pin 14 respective amount, the magnet 15 for holding guide positioning pin 14 is provided with in locating hole 112, the tail end of plate hook 3 is hinged with for driving it to rotate around the pin joint with chuck body 2 thus realizing clamping or unclamping the driving cylinder 4 of spacer pin 12, cylinder 4 is driven to be installed in chuck body 2.
In the above-described embodiments, the mode of operation of numerical control industrial sewing machine that the utility model provides comprises the following steps:
The first step, to treat that the material positioning chamber 111 on the clamping plate 11 of sub-folder tool 1 put into by sewing material, then sub-folder tool 1 is inserted in the sub-folder tool accommodating cavity 21 in chuck body 2, then start and drive cylinder 4, cylinder 4 is driven to drive plate hook 3 rotate clockwise around the pin joint of itself and chuck body 2 thus tightly caught on by the spacer pin 12 of sub-folder tool 1, now sewing needle down moves, and starts to make material.
Second step, while sewing needle is made material, operating personnel pick up second sub-fixture 1, second block of material to be sewed is put into the material positioning chamber 111 on the clamping plate 11 of the second sub-folder tool 1, after first block of material has been made, start and drive cylinder 4, now, cylinder 4 is driven to drive plate hook 3 rotate counterclockwise around the pin joint of itself and chuck body 2 thus unclamped by the spacer pin 12 of sub-folder tool 1, first sub-fixture 1 is extracted out by operating personnel in sub-folder tool accommodating cavity 21, and wait to sew in the second sub-folder tool 1 intron fixture accommodating cavity 21 of material by putting well.
3rd step, starts and drives cylinder 4, and drive cylinder 4 to drive plate hook 3 rotate clockwise around the pin joint of itself and chuck body 2 thus tightly caught on by the spacer pin 12 of the second sub-folder tool 1, now sewing needle down moves, and starts to make material.
Above-mentioned steps is repeated again after completing the 3rd step.
The beneficial effect that the utility model obtains is: operating personnel can will treat while sewing machine is made that sub-folder tool 1 put into by sewing material, whole making in process is only that sewing machine just needs to stop when picking and placeing sub-folder tool 1, due to pick and place time that sub-folder tool 1 expends compared to existing technology in directly place toward the material positioning chamber on positioning splint 8 in and treat that the time expended required for sewing material wants much shorter, therefore the production efficiency of this numerical control industrial sewing machine (computer sewing machine) is very high.
It should be noted that, in the above-described embodiment, the concrete structure of horizontal drive apparatus is not particularly limited, as long as its can be any one structure in prior art drive unit its can reach the object driving fixture movement all around in horizontal plane, structure due to this horizontal drive apparatus is existing, not improvements of the present invention, do not repeat them here.
Further, as shown in Figure 2, this numerical control industrial sewing machine also comprises one piece and is located at and waits the second pressing plate 5 of material of sewing for pushing down in material positioning chamber 111 above chuck body 2, the size of the second pressing plate 5 is less than the size of making window 131, second pressing plate 5 push down in material positioning chamber 111 wait sew material time, the gap can passed for sewing needle is there is between the lateral wall of the second pressing plate 5 and the sidewall making window 131, second pressing plate 5 is connected with a connecting rod 6, connecting rod 6 is connected with the vertical drive (vertical drive is not shown in the accompanying drawings) for driving the second pressing plate 5 to move up and down.
By arranging second pressing plate 5 that can move up and down above chuck body 2, when needing the material area of sewing very large and quality is very soft, first pressing plate 13 cannot prevent from material is scurried out completely, material can be pushed down in material positioning chamber 111 by the existence of the second pressing plate 5 well, and material is up scurried out in material positioning chamber 111 when preventing sewing, make the process of making of sewing machine more stable, make better effects if.
It should be noted that, in the above-described embodiment, the concrete structure of vertical drive is not particularly limited, as long as its can be any one structure in prior art drive unit its can reach the object that driving second pressing plate 5 moves up and down, structure due to this vertical drive is existing, not improvements of the present invention, do not repeat them here.
Preferably, as shown in Figure 3 and Figure 6, the front end of clamping plate 311 is provided with the handle 37 being convenient to grasp, and handle 37 is bolted to connection the upper surface in clamping plate 311.
Handle 37 is set in the front end of clamping plate 311 and can allows operating personnel more easily by sub-folder tool 31 intron fixture accommodating cavity 321, also lighter, easy when sub-folder tool 31 being extracted out from sub-folder tool accommodating cavity 321 simultaneously.
It should be noted that, above-mentioned preferred embodiment in, there is no particular restriction for the concrete structure of handle 37, it can be the handle of strip shape, also can be columniform handle, or the handle of other shapes, as long as it can reach the effect being convenient to fingertip grasp.
Further, cylinder 34 is driven to be pen type cylinder.
Pen type cylinder is lightweight, volume is little, pen type cylinder is adopted to drive plate hook 33 greatly can alleviate the gross weight of the parts that chuck body 32 is installed, decrease because the normal time uses chuck body 32 and the distortion of horizontal drive apparatus junction, increase the service life of sewing machine.
Above-described embodiment is the utility model preferably implementation, and in addition, the utility model can also realize by alternate manner, and under the prerequisite not departing from the technical program design, any apparent replacement is all within protection domain of the present utility model.
The improvements of the utility model relative to prior art are understood more easily in order to allow those of ordinary skill in the art, accompanying drawings more of the present utility model and description are simplified, and for the sake of clarity, present specification is omitted some other elements, and those of ordinary skill in the art it is to be appreciated that these abridged elements also can form content of the present utility model.

Claims (4)

1. a numerical control industrial sewing machine, comprise support, be located at the head above described support, working plate, fixture and for driving the horizontal drive apparatus of described fixture horizontal movement, described fixture is located at the top of working plate, it is characterized in that: described fixture comprises the chuck body (2) of at least two sub-fixtures (1) and a tabular, the rear end of described chuck body (2) is connected with horizontal drive apparatus, the front end of described chuck body (2) offers sub-folder tool accommodating cavity (21), described sub-folder tool (1) can be extracted out in sub-folder tool accommodating cavity (21), the top sides of described sub-folder tool accommodating cavity (21) is along the flange (22) being provided with a circle and up scurrying out in sub-folder tool accommodating cavity (21) for preventing sub-folder tool (1), the upper surface of described chuck body (2) is hinged with a pair for preventing the plate hook (3) of sub-folder tool (1) " L " shape of horizontal play in sub-folder tool accommodating cavity (21), described plate hook (3) is located at the left and right sides of sub-folder tool accommodating cavity (21), described sub-folder tool (1) comprises the clamping plate (11) and a pair spacer pin (12) that one piece of stainless steel makes, the middle part of described clamping plate (11) is provided with material positioning chamber (111), described spacer pin (12) is located at the left and right sides of material positioning chamber (111) and is connected with the upper surface of clamping plate (11), the upper surface of described clamping plate (11) is provided with the first pressing plate (13) that a piece prevents from treating the stainless steel that sewing material is up scurried out in material positioning chamber (111), the middle part of described first pressing plate (13) offers makes window (131), described size of making window (131) is less than the size of material positioning chamber (111), the lower surface of described first pressing plate (13) is provided with at least two guide positioning pins made of iron (14), described clamping plate (11) are provided with the locating hole (112) with described guide positioning pin (14) respective amount, the magnet (15) for holding guide positioning pin (14) is provided with in described locating hole (112), the tail end of described plate hook (3) is hinged with for driving it to rotate around the pin joint with chuck body (2) thus realizing clamping or unclamping the driving cylinder (4) of spacer pin (12), described driving cylinder (4) is installed in chuck body (2).
2. numerical control industrial sewing machine according to claim 1, it is characterized in that: described numerical control industrial sewing machine also comprise one piece be located at chuck body (2) top waiting second pressing plate (5) of material of sewing for pushing down in material positioning chamber (111), the size of described second pressing plate (5) is less than the size of making window (131), described second pressing plate (5) push down in material positioning chamber (111) wait sew material time, the gap can passed for sewing needle is there is between the lateral wall of the second pressing plate (5) and the sidewall making window (131), described second pressing plate (5) is connected with a connecting rod (6), described connecting rod (6) is connected with the vertical drive for driving the second pressing plate (5) to move up and down.
3. numerical control industrial sewing machine according to claim 1 and 2, is characterized in that: the front end of described clamping plate (11) is provided with the handle (7) being convenient to grasp, and described handle (7) is bolted to connection the upper surface in clamping plate (11).
4. numerical control industrial sewing machine according to claim 3, is characterized in that: described driving cylinder (4) is pen type cylinder.
CN201520056124.1U 2015-01-27 2015-01-27 A kind of numerical control industrial sewing machine Expired - Fee Related CN204509661U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201520056124.1U CN204509661U (en) 2015-01-27 2015-01-27 A kind of numerical control industrial sewing machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201520056124.1U CN204509661U (en) 2015-01-27 2015-01-27 A kind of numerical control industrial sewing machine

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CN204509661U true CN204509661U (en) 2015-07-29

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110103284A (en) * 2019-04-16 2019-08-09 苏州领裕电子科技有限公司 A kind of keyboard glue connection line stamping equipment
CN110846818A (en) * 2019-10-14 2020-02-28 安徽艾丽格斯服饰有限公司 Auxiliary mechanism is sewed up to dress
CN112981742A (en) * 2021-02-04 2021-06-18 中山市志捷鞋业技术服务有限公司 Curved surface sewing clamp and curved surface sewing method

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110103284A (en) * 2019-04-16 2019-08-09 苏州领裕电子科技有限公司 A kind of keyboard glue connection line stamping equipment
CN110846818A (en) * 2019-10-14 2020-02-28 安徽艾丽格斯服饰有限公司 Auxiliary mechanism is sewed up to dress
CN112981742A (en) * 2021-02-04 2021-06-18 中山市志捷鞋业技术服务有限公司 Curved surface sewing clamp and curved surface sewing method

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GR01 Patent grant
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: 20150729

Termination date: 20190127