Meshbelt embroidery circulation work feed system

文档序号:1138710 发布日期:2020-10-09 浏览:34次 中文

阅读说明:本技术 一种织带绣花循环送布系统 (Meshbelt embroidery circulation work feed system ) 是由 林金练 林少鹏 林春晓 张贵能 肖伟霖 于 2020-05-12 设计创作,主要内容包括:本发明公开了一种织带绣花循环送布系统,包括闭环步进电机,所述闭环步进电机的输出轴上通过弹性锁紧块连接有主动滚轮,所述主动滚轮上配合连接有可调滚轮和从动滚轮,由于采用了上述结构,因而提高了本发明的送布效率,且节约了大量人力。(The invention discloses a woven belt embroidery circulating cloth feeding system which comprises a closed-loop stepping motor, wherein an output shaft of the closed-loop stepping motor is connected with a driving roller through an elastic locking block, and the driving roller is connected with an adjustable roller and a driven roller in a matching manner.)

1. The mesh belt embroidery circular cloth feeding system is characterized by comprising a closed-loop stepping motor (1), wherein an output shaft of the closed-loop stepping motor (1) is connected with a driving roller (2) through an elastic locking block (10), and the driving roller (2) is connected with an adjustable roller (3) and a driven roller (4) in a matching mode.

2. The webbing embroidery endless feed system according to claim 1, wherein the driving roller (2) is connected to the first roller base (40) and the second roller base (50) through a pair of shaft joints (20) and a connecting shaft (30) between a pair of second shaft joints (20).

3. The webbing embroidery endless feed system according to claim 2, wherein the front end of the first roller base (40) is provided with an adjustable roller base (60).

4. The webbing embroidery endless feed system according to claim 3, wherein a cylinder (5) is connected to a front end of the adjustable roller base (60) through a cylinder connecting block (70).

5. The webbing embroidery endless cloth feeding system according to claim 4, wherein the cylinder (5) is connected to the cylinder connection block (70) by two pairs of screws.

6. The webbing embroidery endless feed system according to claim 1, characterized in that the closed loop stepping motor (1) is provided at the left end of a connecting seat (80), the driving roller (2), the adjustable roller (3) and the driven roller (4) are all located at the right side of the connecting seat (80), and the elastic locking block (10) is located in a circular groove (81) on the connecting seat (80).

7. The webbing embroidery endless feed system according to claim 6, characterized in that the closed-loop stepping motor (1) is connected to the connecting base (80) by six screws.

Technical Field

The invention relates to the technical field of braid embroidery equipment, in particular to a braid embroidery circulating cloth feeding system.

Background

The woven belt embroidery circulating cloth feeding system is suitable for woven belts with various widths, and is suitable for woven belts in various forms such as knitted belts, shuttle woven belts and the like.

The cloth feeding system of the existing embroidery machine cannot be circulated, so that in the process of embroidering the mesh belt, embroidery of a pattern is finished, the mesh belt needs to be manually repositioned and clamped, the pattern butt joint precision is reduced, a large amount of manpower is wasted, and the production efficiency is reduced.

Disclosure of Invention

Technical problem to be solved

Aiming at the defects of the prior art, the invention provides a woven belt embroidering circulation cloth feeding system, which solves the problems of low positioning precision, low efficiency and manpower waste of the conventional embroidering cloth feeding system.

(II) technical scheme

In order to achieve the purpose, the invention is realized by the following technical scheme:

the utility model provides a meshbelt embroidery circulation work feed system, wherein, includes closed loop step motor, be connected with the initiative gyro wheel through elasticity latch segment on closed loop step motor's the output shaft, the cooperation is connected with adjustable gyro wheel and driven gyro wheel on the initiative gyro wheel.

Further, the driving roller is connected with the first roller seat and the second roller seat through a pair of shaft joints and a connecting shaft positioned between a pair of second shaft joints.

Furthermore, an adjustable roller seat is arranged at the front end of the first roller seat.

Furthermore, the front end of the adjustable roller seat is connected with an air cylinder through an air cylinder connecting block.

Further, the cylinder is connected to the cylinder connection block by two pairs of screws.

Further, closed loop step motor sets up the left end at a connecting seat, initiative gyro wheel, adjustable gyro wheel and driven gyro wheel all are located the right side of connecting seat, just elasticity latch segment is located circular slot on the connecting seat.

Further, the closed-loop stepping motor is connected with the connecting seat through six screws.

(III) advantageous effects

The invention has the beneficial effects that: the invention can carry out infinite circulation cloth feeding, thereby improving the cloth feeding precision and efficiency of the invention.

Drawings

Fig. 1 is an exploded view of the present invention.

In the drawings: the device comprises a closed-loop stepping motor 1, a driving roller 2, an adjustable roller 3, a driven roller 4, an air cylinder 5, an elastic locking block 10, a shaft joint 20, a connecting shaft 30, a first roller seat 40, a second roller seat 50, an adjustable roller seat 60, an air cylinder connecting block 70, a connecting seat 80 and a circular groove 81.

Detailed Description

In order to make the objects, technical solutions and advantages of the embodiments of the present invention clearer, the technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings of specific embodiments of the present invention.

Referring to the attached drawing 1, the woven belt embroidery circular cloth feeding system comprises a closed-loop stepping motor 1, wherein an output shaft of the closed-loop stepping motor 1 is connected with a driving roller 2 through an elastic locking block 10, the driving roller 2 is connected with an adjustable roller 3 and a driven roller 4 in a matching mode, a processed woven belt penetrates through the middle of the driven roller 4, the driving roller 2 and the adjustable roller 3, and three-roller linkage is achieved through friction force, so that circular cloth feeding is completed.

As shown in fig. 1, the driving roller 2 is connected to a first roller base 40 and a second roller base 50 through a pair of shaft joints 20 and a connecting shaft 30 located between a pair of second shaft joints 20, and an adjustable roller base 60 is disposed at a front end of the first roller base 40.

As shown in fig. 1, the front end of the adjustable roller base 60 is connected with an air cylinder 5 through an air cylinder connecting block 70.

In the present embodiment, the cylinder 5 is connected to the cylinder connection block 70 by two pairs of screws.

In this embodiment, the closed-loop stepping motor 1 is disposed at the left end of a connecting seat 80, the driving roller 2, the adjustable roller 3 and the driven roller 4 are all located at the right side of the connecting seat 80, and the elastic locking block 10 is located in a circular groove 81 on the connecting seat 80.

As shown in fig. 1, the closed-loop stepping motor 1 is connected to the connection base 80 by six screws.

In the structure, according to the thickness of the fabric of the mesh belt, the cylinder 5 works to drive the adjustable roller seat 60 to move, so that the gap between the driving roller 2 and the driven roller 4 is adjusted, the cylinder 5 drives the adjustable roller seat 60 to move, and the distance between the adjustable roller 3 and the driving roller 2 and the distance between the adjustable roller 4 and the adjustable roller 2 are pulled open, so that the mesh belt is convenient to install.

It should be noted that the described embodiments of the invention are only preferred ways of implementing the invention, and that all obvious modifications, which are within the scope of the invention, are all included in the present general inventive concept.

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