Cutting device is made to shoe-pad

文档序号:1028667 发布日期:2020-10-30 浏览:24次 中文

阅读说明:本技术 一种鞋垫制造切割装置 (Cutting device is made to shoe-pad ) 是由 廖冬梅 于 2020-07-08 设计创作,主要内容包括:本发明涉及一种切割装置,尤其涉及一种鞋垫制造切割装置。本发明的技术问题:提供一种无需人工手动进行切割,安全且高效的鞋垫制造切割装置。本发明的技术方案是:一种鞋垫制造切割装置,包括:底座,底座顶部一侧设置有安装架,安装架一侧安装有电机;移动机构,电机与安装架之间连接有移动机构;翻转机构,移动机构上设置有翻转机构;下料机构,下料机构上设有清料机构。本发明通过第一齿轮与齿条之间的配合,从而带动切割模具进行旋转,方便对不同鞋垫面进行切割。(The invention relates to a cutting device, in particular to a cutting device for manufacturing insoles. The technical problems of the invention are as follows: provided is a safe and efficient insole manufacturing and cutting device which does not require manual cutting. The technical scheme of the invention is as follows: an insole manufacturing and cutting apparatus comprising: the motor-driven automatic water supply device comprises a base, wherein a mounting frame is arranged on one side of the top of the base, and a motor is arranged on one side of the mounting frame; the moving mechanism is connected between the motor and the mounting frame; the moving mechanism is provided with a turnover mechanism; the blanking mechanism is provided with a material cleaning mechanism. According to the invention, the cutting die is driven to rotate by matching the first gear and the rack, so that different insole surfaces can be conveniently cut.)

1. A cutting device for insole manufacture, comprising:

the motor comprises a base (1), wherein a mounting rack (2) is arranged on one side of the top of the base (1), and a motor (3) is arranged on one side of the mounting rack (2);

The moving mechanism (4) is connected between the motor (3) and the mounting rack (2);

the turnover mechanism (5) is arranged on the moving mechanism (4);

the blanking mechanism (6), the blanking mechanism (6) is provided with a material cleaning mechanism (7);

the first collecting frame (8) and the second collecting frame (9) are respectively arranged on one side of the top of the base (1).

2. The insole manufacturing and cutting apparatus according to claim 1, wherein the moving mechanism (4) comprises:

the first rotating shaft (41) is rotatably connected to one side of the mounting frame (2), and the first rotating shaft (41) is connected with an output shaft of the motor (3);

the disc (42) is connected to the first rotating shaft (41) on one side, away from the motor (3), of the disc (42);

the sliding sleeve (44), sliding connection has push rod (43) in the sliding sleeve (44), and the one end of push rod (43) that is close to first pivot (41) one side is connected with the eccentric position slip of disc (42).

3. The insole manufacturing and cutting apparatus of claim 2, wherein the turnover mechanism (5) comprises:

one end of the push rod (43) at one side of the telescopic block (51) far away from the disc (42) is rotatably connected with a second rotating shaft (55);

The first gear (52) is connected to a second rotating shaft (55) on one side close to the mounting rack (2), a cutting grinding tool (53) is connected to the second rotating shaft (55) on one side far away from the first gear (52), and telescopic blocks (51) are connected to two sides of the cutting grinding tool (53);

the rack (54) is connected to the mounting rack (2) on one side, away from the motor (3), of the rack (54).

4. The insole manufacturing and cutting apparatus according to claim 3, wherein the blanking mechanism (6) comprises:

the mounting rack (2) on one side, far away from the rack (54), of the first support (62) is connected with the first support (62), the upper portion of the first support (62) is rotatably connected with a half gear (63), and a transmission assembly (61) is connected between the half gear (63) and the first rotating shaft (41);

the top end of the mounting rack (2) is connected with the supporting frame (65);

the top of the base (1) on one side, far away from the mounting rack (2), of the second support (68) is connected with the second support (68);

the first roller (66) is connected between the second bracket (68) and two sides of the upper part of the supporting frame (65);

the third gear (610) is connected to the first roller (66) on one side close to the half gear (63), and the third gear (610) is meshed with the half gear (63);

The first rollers (66) on one side, far away from the supporting frame (65), of the second gears (64) are connected with the second gears (64), and the second gears (64) are meshed with each other;

and a second roller (69) is connected between a second support (68) on one side far away from the first roller (66) and the two sides of the mounting frame (2), and flat belts (67) are connected between the first roller (66) on one side far away from the mounting frame (2) and the second roller (69).

5. The insole manufacturing and cutting apparatus according to claim 4, wherein the material cleaning mechanism (7) comprises:

the baffle (71) is connected between the mounting rack (2) and the second support (68);

the connecting columns (72) are connected to the two sides of the baffle (71), and a bottom plate (73) is connected between the bottoms of the connecting columns (72).

Technical Field

The invention relates to a cutting device, in particular to a cutting device for manufacturing insoles.

Background

The shoe-pad is placed inside shoes and between people's foot and sole, its effect is the travelling comfort when trampling in order to increase people's foot, along with people's quality of life's continuous improvement, people are also higher and higher to the requirement of shoes and shoe-pad, at present in making the shoe-pad, wherein there is one important process to cut the shoe-pad, traditional manufacturing approach is to need to pass through artifical handheld shoe-pad mould, place the shoe-pad mould on the shoe-pad surface fabric, use the cutter to cut, thereby make the shoe-pad, this mode can not cut in batches, and artifical handheld cutter is injured easily in cutting process.

Disclosure of Invention

In order to overcome the defects that the traditional cutting mode needs manual operation, can not cut in batches and a manual hand-held cutter is easy to be injured in the cutting process, the invention has the technical problems that: provided is a safe and efficient insole manufacturing and cutting device which does not require manual cutting.

The technical scheme of the invention is as follows: an insole manufacturing and cutting apparatus comprising:

the motor-driven automatic water supply device comprises a base, wherein a mounting frame is arranged on one side of the top of the base, and a motor is arranged on one side of the mounting frame;

the moving mechanism is connected between the motor and the mounting frame;

the moving mechanism is provided with a turnover mechanism;

the blanking mechanism is provided with a material cleaning mechanism;

the first collection frame, base top one side is provided with first collection frame and second collection frame respectively.

More preferably, the moving mechanism includes:

the first rotating shaft is rotatably connected to one side of the mounting frame and is connected with an output shaft of the motor;

the first rotating shaft at one side far away from the motor is connected with a disc;

the sliding sleeve is internally connected with a push rod in a sliding manner, and one end of the push rod close to one side of the first rotating shaft is connected with the eccentric position of the disc in a sliding manner.

More preferably, the turnover mechanism includes:

one end of the push rod, which is far away from one side of the disc, of the telescopic block is rotatably connected with a second rotating shaft;

the first gear is connected with the first gear in the second pivot that is close to mounting bracket one side, keeps away from and is connected with the cutting grinding apparatus in the second pivot of first gear one side, and cutting grinding apparatus both sides are connected with flexible piece.

The rack is connected to the mounting rack on one side far away from the motor.

More preferably, the blanking mechanism includes:

the mounting frame far away from one side of the rack is connected with a first support, the upper part of the first support is rotatably connected with a half gear, and a transmission assembly is connected between the half gear and a first rotating shaft;

the top end of the mounting rack is connected with the supporting frame;

the top of the base, which is far away from one side of the mounting rack, is connected with a second support;

the first roller is connected between the second bracket and two sides of the upper part of the supporting frame;

the first roller close to one side of the half gear is connected with a third gear which is meshed with the half gear;

the first rollers at one side, far away from the supporting frame, of the second gears are connected with the second gears, and the second gears are meshed with each other;

and a second roller is connected between the second support far away from one side of the first roller and the two sides of the mounting frame, and flat belts are connected between the first roller far away from one side of the mounting frame and the second roller.

More preferably, the material cleaning mechanism comprises:

the baffle is connected between the mounting frame and the second support;

the spliced pole, baffle both sides all are connected with the spliced pole, are connected with the bottom plate between the spliced pole bottom.

The invention achieves the following effects: 1. through the cooperation between first gear and the rack to drive cutting die and rotate, conveniently cut different shoe-pad faces.

2. Through the cooperation between first cylinder and the second cylinder, can convey the shoe-pad surface fabric, so, just can be continuous cut shoe-pad.

3. Through the cooperation between the baffle that sets up, spliced pole and the bottom plate for the shoe-pad that the cutting finishes drops to the second through the bottom plate and collects in the frame, thereby reaches the classification of finished product shoe-pad and waste material, and convenience of customers collects.

Drawings

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

Fig. 2 is a schematic perspective view of the moving mechanism of the present invention.

Fig. 3 is a schematic perspective view of the turnover mechanism of the present invention.

Fig. 4 is a schematic perspective view of the blanking mechanism of the present invention.

Fig. 5 is a schematic perspective view of the material cleaning mechanism of the present invention.

Wherein: 1. the base, 2, the mounting bracket, 3, the motor, 4, the moving mechanism, 41, first pivot, 42, the disc, 43, the push rod, 44, the sliding sleeve, 5, tilting mechanism, 51, flexible piece, 52, first gear, 53, the cutting grinding apparatus, 54, the rack, 55, the second pivot, 6, unloading mechanism, 61, drive assembly, 62, first support, 63, the half gear, 64, the second gear, 65, the support frame, 66, first cylinder, 67, the flat belt, 68, the second support, 69, the second cylinder, 610, the third gear, 7, clear material mechanism, 71, the baffle, 72, the spliced pole, 73, the bottom plate, 8, first collection frame, 9, the second collection frame.

Detailed Description

Embodiments of the present invention will be described in detail below with reference to the accompanying drawings.

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