Metal button stamping forming equipment for clothing production

文档序号:867567 发布日期:2021-03-19 浏览:23次 中文

阅读说明:本技术 一种服装生产用金属纽扣冲压成型设备 (Metal button stamping forming equipment for clothing production ) 是由 代安兴 于 2020-11-20 设计创作,主要内容包括:本发明涉及一种冲压成型设备,尤其涉及一种服装生产用金属纽扣冲压成型设备。提供一种可以快速冲压、有效防止卡住、废料不会堆积在设备底部的服装生产用金属纽扣冲压成型设备。一种服装生产用金属纽扣冲压成型设备,包括有:安装座;旋转组件,安装在安装座上,通过转动的方式进行旋转;冲压组件,安装在安装座上,通过滑动的方式进行冲压;下料组件,安装在安装座上,通过滑动的方式进行下料。本发明通过第一转杆的扇形齿轮与第二转杆的全齿轮啮合转动时,快速将纽扣进行移动,无需人工操作,对移动到下压块的纽扣进行加工,无需人工手动按压,当下料桶放满时,可以自动将纽扣放置在旋转组件,无需人工放置,可以防止纽扣的废料散落至设备内。(The invention relates to punch forming equipment, in particular to metal button punch forming equipment for clothing production. The metal button punch forming equipment for producing the clothes can punch quickly, prevent clamping effectively and prevent waste materials from being accumulated at the bottom of the equipment. The utility model provides a clothing production is with metal button stamping forming equipment, including: a mounting seat; the rotating assembly is arranged on the mounting seat and rotates in a rotating mode; the stamping assembly is arranged on the mounting seat and used for stamping in a sliding mode; the blanking assembly is installed on the installation seat and carries out blanking in a sliding mode. According to the button processing device, when the sector gear of the first rotating rod and the full gear of the second rotating rod are meshed and rotated, the button is rapidly moved, manual operation is not needed, the button moved to the lower pressing block is processed, manual pressing is not needed, when the feeding barrel is full, the button can be automatically placed on the rotating assembly, manual placing is not needed, and waste materials of the button can be prevented from scattering into the device.)

1. The utility model provides a clothing production is with metal button stamping forming equipment which characterized in that, including:

the mounting seat (1) is used for mounting the whole device;

the rotating assembly is arranged on the mounting seat (1) and rotates in a rotating mode;

the stamping assembly is arranged on the mounting seat (1) and used for stamping in a sliding mode;

the blanking assembly is arranged on the mounting seat (1) and carries out blanking in a sliding mode.

2. The metal button punch forming device for producing the clothes as claimed in claim 1, wherein the rotating assembly comprises:

the speed reducing motor (2) is arranged on the mounting seat (1);

the first rotating rod (3) is arranged on an output shaft of the speed reducing motor (2);

the sector gear (4) is arranged on the first rotating rod (3);

the second rotating rod (5) is arranged on the mounting seat (1);

the full gear (6) is arranged on the second rotating rod (5);

the fixing rod (7) is arranged on the mounting seat (1);

the sliding rail (8) is arranged on the fixing rod (7) in a sliding manner;

the rotating plate (9) is arranged on the sliding rail (8), and at least two placing grooves (10) are formed in the rotating plate (9).

3. The metal button punch forming device for producing the clothes as claimed in claim 2, wherein the punching component comprises:

the first belt pulley (11) is arranged on an output shaft of the speed reducing motor (2);

the second belt pulley (12) is rotatably arranged on the mounting seat (1);

a flat belt (13) installed between the first pulley (11) and the second pulley (12);

a profile block (14) mounted on the second pulley (12);

the mounting block (15) is mounted on the mounting base (1);

two guide rails (16), wherein the two guide rails (16) are arranged on the mounting block (15);

a first slide block (17) slidably mounted on the guide rail (16);

a U-shaped lever (18) mounted on the first sliding block (17);

a connecting rod (19) mounted on the first slide block (17);

a first spring (20) mounted between the connecting rod (19) and the guide rail (16);

the impact block (21) is arranged on the connecting rod (19), and the impact block (21) is matched with the placing groove (10).

4. The metal button punch forming equipment for clothing production as claimed in claim 3, wherein the blanking assembly comprises:

the mounting rack (22) is mounted on the mounting base (1);

the lower charging barrels (23) are at least two and are all installed on the installation frame (22), and the feed inlet (24) is formed in the lower charging barrels (23).

5. The metal button stamping and forming equipment for garment production according to claim 4, further comprising:

a vertical rod (25) mounted on the mounting base (1);

a collecting frame (26) mounted on the vertical rod (25);

a sloping plate (27) mounted on the collecting frame (26).

6. The metal button stamping and forming equipment for producing the clothes according to claim 5, further comprising:

the blanking barrel (23) is provided with at least two through holes (28), and the second sliding block (29) is arranged on the through holes (28) in a sliding manner;

a second spring (30) connected between the blanking barrel (23) and the second sliding block (29);

the push plate (31) is arranged on the blanking barrel (23) in a sliding manner;

and the special-shaped rod (32) is arranged on the push plate (31), and the special-shaped rod (32) is connected with the second sliding block (29).

7. The metal button stamping and forming equipment for producing the clothes according to claim 6, further comprising:

the pull rod (33) is installed on the installation seat (1) in a sliding manner;

a circular plate (34) attached to the pull rod (33);

at least two groups of push rods (35) are arranged on the circular plate (34), and the push rods (35) are matched with the placing groove (10).

Technical Field

The invention relates to punch forming equipment, in particular to metal button punch forming equipment for clothing production.

Background

Buttons, in ancient romans, were originally used as decorations and were used for clothes. In the 13 th century, the function of buttons is the same as today. At that time, people have understood to make buttonholes in clothes, which increases the utility value of buttons. In the 16 th century, buttons have gained popularity. With the rise of rapid fashion, buttons have become creative from the former functional types.

The button of current metal button stamping forming equipment button stamping forming time button is easy to be blocked inside the feed bin down to influenced production efficiency, secondly the button waste material of making when just producing the button piles up in the equipment bottom easily, if the unscheduled clearance leads to metal button stamping forming equipment to damage easily.

Therefore, the metal button punch forming equipment for producing the clothes, which can punch quickly, effectively prevent the clamping and prevent the waste materials from being accumulated at the bottom of the equipment, is urgently needed to be developed.

Disclosure of Invention

In order to overcome the defects that the buttons are easily clamped in the blanking barrel and waste materials generated in button production are accumulated at the bottom of equipment, the invention has the technical problems that: the metal button punch forming equipment for producing the clothes, which can punch quickly, effectively prevent the clamping and prevent the waste materials from being accumulated at the bottom of the equipment, is urgently needed to be researched and developed.

The technical scheme is as follows: the utility model provides a clothing production is with metal button stamping forming equipment, including: a mounting seat; the rotating assembly is arranged on the mounting seat and rotates in a rotating mode; the stamping assembly is arranged on the mounting seat and used for stamping in a sliding mode; the blanking assembly is installed on the installation seat and carries out blanking in a sliding mode.

More preferably, the rotating assembly includes: the speed reducing motor is arranged on the mounting seat; the first rotating rod is arranged on an output shaft of the speed reducing motor; the sector gear is arranged on the first rotating rod; the second rotating rod is arranged on the mounting seat; the full gear is arranged on the second rotating rod; the fixed rod is arranged on the mounting seat; the slide rail is slidably mounted on the fixed rod; the rotating plate is arranged on the sliding rail, and at least two placing grooves are formed in the rotating plate.

More preferably, the punching assembly includes: the first belt pulley is arranged on an output shaft of the speed reducing motor; the second belt pulley is rotatably arranged on the mounting seat; the flat belt is arranged between the first belt pulley and the second belt pulley; the special-shaped block is arranged on the second belt pulley; the mounting block is mounted on the mounting seat; two guide rails are arranged and are mounted on the mounting block; the first sliding block is arranged on the guide rail in a sliding manner; the U-shaped rod is arranged on the first sliding block; the connecting rod is arranged on the first sliding block; the first spring is arranged between the connecting rod and the guide rail; the impact block is installed on the connecting rod, and the impact block cooperates with the standing groove.

More preferably, the blanking assembly comprises: the mounting frame is mounted on the mounting seat; the lower feed cylinder, at least two, all install on the mounting bracket, it has the feed inlet to open on the lower feed cylinder.

More preferably, the method further comprises the following steps: the vertical rod is arranged on the mounting seat; the collecting frame is arranged on the vertical rod; the inclined plate is arranged on the collecting frame.

More preferably, the method further comprises the following steps: the blanking barrel is provided with at least two through holes, and the second sliding block is arranged on the through holes in a sliding manner; the second spring is arranged between the blanking barrel and the second sliding block; the push plate is slidably mounted on the blanking barrel; the dysmorphism pole is installed on the push pedal, and the dysmorphism pole is connected with the second sliding block.

More preferably, the method further comprises the following steps: the pull rod is arranged on the mounting seat in a sliding manner; a circular plate mounted on the pull rod; the push rods are at least two groups and are all installed on the circular plate, and the push rods are matched with the placing grooves.

According to the button processing device, when the sector gear of the first rotating rod and the full gear of the second rotating rod are meshed and rotated, the button is rapidly moved, manual operation is not needed, the button moved to the lower pressing block is processed, manual pressing is not needed, when the feeding barrel is full, the button can be automatically placed on the rotating assembly without manual placing, waste materials of the button can be prevented from being scattered into equipment, the equipment is prevented from being damaged, and whether the processed button meets the standard or not can be observed.

Drawings

Fig. 1 is a schematic perspective view of a first embodiment of the present invention.

Fig. 2 is a schematic perspective view of a second embodiment of the present invention.

FIG. 3 is a schematic view of a first partial body structure according to the present invention.

FIG. 4 is a schematic view of a second partial body structure according to the present invention.

Fig. 5 is a perspective view of a third embodiment of the present invention.

Fig. 6 is a perspective view of a fourth embodiment of the present invention.

The parts are labeled as follows: 1. the mounting base, 2, gear motor, 3, first bull stick, 4, sector gear, 5, second bull stick, 6, all-gear, 7, the dead lever, 8, slide rail, 9, the commentaries on classics board, 10, the standing groove, 11, first belt pulley, 12, second belt pulley, 13, the flat belt, 14, the dysmorphism piece, 15, the installation piece, 16, the guide rail, 17, first sliding block, 18, U type pole, 19, the connecting rod, 20, first spring, 21, the impact block, 22, the mounting bracket, 23, the feed cylinder, 24, the feed inlet, 25, the montant, 26, collect the frame, 27, the swash plate, 28, the through-hole, 29, the second sliding block, 30, the second spring, 31, the push pedal, 32, the dysmorphism pole, 33, the pull rod, 34, the plectane, 35, the push rod.

Detailed Description

The above-described scheme is further illustrated below with reference to specific examples. It should be understood that these examples are for illustrative purposes and are not intended to limit the scope of the present application. The conditions used in the examples may be further adjusted according to the conditions of the particular manufacturer, and the conditions not specified are generally the conditions in routine experiments.

Example 1

A punching forming device for metal buttons for clothing production comprises components and a blanking component shown in figures 1-6, wherein a mounting seat 1 is used for mounting the whole device, a rotating component which rotates in a rotating mode is arranged at the center of the top of the mounting seat 1, a punching component which punches in a sliding mode is arranged at the left part of the mounting seat 1, and the blanking component which punches in a sliding mode is arranged at the right part of the mounting seat 1.

When metal button needs to be processed, a worker puts a certain amount of buttons into the blanking assembly, then the buttons in the blanking assembly fall into the rotating assembly, the worker can start the rotating assembly to rotate, when the rotating assembly transports the buttons to the lower side of the stamping assembly, the buttons stop moving, meanwhile, the stamping assembly stamps the buttons below, then the rotating assembly continues to rotate to move the buttons to a proper position, the worker can take the buttons out of the rotating assembly, and after all buttons are stamped, the rotating assembly can be closed.

As shown in fig. 1-3, the rotating assembly includes a reduction motor 2, a first rotating rod 3, a sector gear 4, a second rotating rod 5, a full gear 6, a fixing rod 7, a sliding rail 8 and a rotating plate 9, the reduction motor 2 is fixedly connected to the upper right of the mounting seat 1 through a bolt, the first rotating rod 3 is arranged on an output shaft of the reduction motor 2, the sector gear 4 is arranged on the upper portion of the first rotating rod 3, the second rotating rod 5 is arranged at the center of the mounting seat 1, the full gear 6 is arranged on the lower portion of the second rotating rod 5, the sector gear 4 is meshed with the full gear 6, the fixing rod 7 is welded on the front left of the mounting seat 1, the sliding rail 8 is arranged on the upper portion of the fixing rod 7 in a sliding manner, the rotating plate 9 is arranged on the top of the sliding rail 8, four placing grooves are arranged in.

After the unloading subassembly is placed the button and is accomplished, start gear motor 2 and rotate, and then drive first bull stick 3 and rotate, drive sector gear 4 and rotate, when sector gear 4 and full gear 6 contact, promote full gear 6 and rotate, drive second bull stick 5 and rotate, thereby rotor plate 9 passes through slide rail 8 and rotates, it is rotatory to drive standing groove 10, when sector gear 4 breaks away from with full gear 6, full gear 6 and last device stall, so, can remove the button fast, need not manual operation.

As shown in fig. 1-4, the punching assembly includes a first belt pulley 11, a second belt pulley 12, a flat belt 13, a profile block 14, a mounting block 15, a guide rail 16, a first sliding block 17, a U-shaped rod 18, a connecting rod 19, a first spring 20 and an impact block 21, the first belt pulley 11 is disposed on an output shaft of the reduction motor 2, the second belt pulley 12 is rotatably disposed on a left portion of the mounting base 1, the flat belt 13 is disposed between the first belt pulley 11 and the second belt pulley 12, the profile block 14 is disposed on the second belt pulley 12, the mounting block 15 is fixedly connected to a left side of a top portion of the mounting base 1 through screws, the guide rails 16 are fixedly connected to top portions of the mounting blocks 15 through screws, the first sliding blocks 17 are disposed in the guide rails 16, the U-shaped rod 18 is disposed between right sides of the first sliding blocks 17, the connecting rod 19 is welded to top portions of the first sliding blocks 17, the first springs 20 are connected between, the right end of the connecting rod 19 is provided with an impact block 21, and the impact block 21 is matched with the placing groove 10.

When the speed reducing motor 2 rotates, the first belt pulley 11 is driven to rotate, the second belt pulley 12 is driven to rotate through the flat belt 13, the special-shaped block 14 is driven to rotate, when the special-shaped block 14 is in contact with the U-shaped rod 18, the U-shaped rod 18 is pushed to move upwards, the first sliding block 17 is driven to slide upwards, the connecting rod 19 is further driven to slide upwards, the first spring 20 is compressed, the impact block 21 is driven to move upwards, when the special-shaped block 14 is separated from the U-shaped rod 18, the connecting rod 19 and the upper device of the connecting rod are driven to move downwards under the action of the first spring 20 to reset, the impact block 21 is driven to move downwards to reset, and buttons are stamped.

As shown in fig. 1, fig. 2, fig. 5 and fig. 6, the blanking assembly comprises a mounting frame 22, four blanking barrels 23 and a feeding port 24, the mounting frame 22 is fixedly connected to the right part of the mounting base 1 through bolts, the number of the blanking barrels 23 is four, the left part of the mounting frame 22 is provided with the blanking barrels 23, and the side edges of the blanking barrels 23 are provided with the feeding port 24.

When needing to add man-hour to the button to the metal, the staff places a certain amount of button in feed cylinder 23 from the feed opening with the button, and then the button passes through feed cylinder 23 landing to corresponding standing groove 10 in, so, can place the button in standing groove 10 automatically, need not that the staff is manual to be placed.

Example 2

In addition to embodiment 1, as shown in fig. 6, the installation base 1 includes a vertical rod 25, a collection frame 26 and a sloping plate 27, the vertical rod 25 is welded to the rear side of the left portion of the installation base 1, the collection frame 26 is fixedly connected to the upper portion of the vertical rod 25 through a bolt, and the sloping plate 27 is fixedly connected to the rear side of the collection frame 26 through a bolt.

The button waste material that produces after the impact block 21 punches the button drops to collecting frame 26 through standing groove 10 in, then the waste material drops outside equipment through swash plate 27 again, so, can prevent that the waste material of button from scattering to the equipment in to cause the damage of equipment.

On the basis of embodiment 1, as shown in fig. 1, 2 and 5, the automatic feeding device further comprises a second sliding block 29, a second spring 30, a pushing plate 31 and a special-shaped rod 32, wherein through holes 28 are formed in the outer sides of the blanking barrels, the second sliding blocks 29 are slidably arranged in the through holes 28, the second springs 30 are connected between the blanking barrels and the second sliding blocks 29, the pushing plates 31 are slidably arranged in the blanking barrels, the special-shaped rod 32 is welded at the center of the top of each pushing plate 31, and the special-shaped rod 32 is connected with the second sliding blocks 29.

When buttons are required to be placed in the blanking barrel 23, a worker pulls the special-shaped rod 32 to move upwards to drive the push plate 31 to slide upwards, and further drive the second sliding block 29 to slide upwards, the second spring 30 is stretched, when a certain amount of buttons are added into the blanking barrel 23, the worker can release the special-shaped rod 32, and the second sliding block 29 and the upper device of the second sliding block are driven to move downwards under the action of the second spring 30 to reset, so that the button can be effectively prevented from being clamped in the blanking barrel.

On the basis of the embodiment 1, as shown in fig. 1, the mounting seat further comprises a pull rod 33, a circular plate 34 and four push rods 35, the pull rod 33 is slidably arranged at the front part of the mounting seat 1, the circular plate 34 is fixedly connected to the rear end of the pull rod 33 through bolts, the four push rods 35 are in one group, four groups are provided, the push rods 35 are welded to the top of the circular plate 34, and the push rods 35 are matched with the placing groove 10.

After button processing finishes, when treating that the rotating assembly is rotatory to push rod 35 top, the staff can stimulate pull rod 33 and upwards slide, drives plectane 34 rebound to drive push rod 35 rebound and release the button, treat that the button can take out the button that has processed after releasing, so, can need not that the staff is manual to take out the button from standing groove 10, prevent effectively that the staff from not taking out the button fast, lead to the button to continue to move the processing that has hindered next batch of button.

The above examples are merely representative of preferred embodiments of the present invention, and the description thereof is more specific and detailed, but not to be construed as limiting the scope of the present invention. It should be noted that, for those skilled in the art, various changes, modifications and substitutions can be made without departing from the spirit of the present invention, and these are all within the scope of the present invention. Therefore, the protection scope of the present patent shall be subject to the appended claims.

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