Strip-shaped steamed twisted roll making machine

文档序号:977051 发布日期:2020-11-06 浏览:13次 中文

阅读说明:本技术 一种条形花卷制作机 (Strip-shaped steamed twisted roll making machine ) 是由 姚淑贞 于 2020-07-20 设计创作,主要内容包括:本发明属于食品加工技术领域,尤其涉及一种条形花卷制作机。要解决的技术问题是:提供一种快速制作、效率高的条形花卷制作机。技术方案是:一种条形花卷制作机,包括:底座;底座顶部两侧均设置有两轴承座;滚筒,同一侧的两轴承座之间设置有滚筒;传送带,两滚筒之间绕有传送带;安装台,底座中部靠近滚筒位置设置有安装台;收集箱,安装台上设置有收集箱;印花模具,收集箱滑道上部设置有印花模具,印花模具与传送带间歇配合;切割机构,底座上位于传送带上方设置有切割机构;辅助成型机构,安装台上设置有辅助成型机构。本发明达到了快速制作、效率高的效果。(The invention belongs to the technical field of food processing, and particularly relates to a strip-shaped steamed twisted roll making machine. The technical problem to be solved is as follows: provides a strip-shaped steamed twisted roll making machine which is rapid in making and high in efficiency. The technical scheme is as follows: a machine for making a strip-shaped steamed twisted roll, comprising: a base; two sides of the top of the base are provided with two bearing seats; the roller is arranged between the two bearing seats on the same side; the conveying belt is wound between the two rollers; the middle part of the base is provided with an installation platform close to the roller; the collecting box is arranged on the mounting platform; the upper part of the slideway of the collecting box is provided with a printing mould which is intermittently matched with the conveyor belt; the cutting mechanism is arranged on the base above the conveying belt; the auxiliary forming mechanism is arranged on the mounting table. The invention achieves the effects of quick manufacture and high efficiency.)

1. A machine for making bar-shaped steamed twisted rolls, comprising:

the bearing seat comprises a base (1), wherein two sides of the top of the base (1) are respectively provided with two bearing seats (2);

the roller (3) is arranged between the two bearing blocks (2) on the same side;

a conveyor belt (4), wherein the conveyor belt (4) is wound between the two rollers (3);

the middle part of the base (1) is provided with the mounting table (5) close to the roller (3);

the collecting box (6) is arranged on the mounting table (5);

the printing mold (7) is arranged on the upper part of the slideway of the collecting box (6), and the printing mold (7) is intermittently matched with the conveyor belt (4);

the cutting mechanism (8) is arranged above the conveyor belt (4) on the base (1);

the auxiliary forming mechanism (9) is arranged on the mounting table (5), and the auxiliary forming mechanism (9) is matched with the cutting mechanism (8).

2. Machine according to claim 1, characterized in that said cutting means (8) comprise:

the printing device comprises straight sliding rails (81), wherein the straight sliding rails (81) are symmetrically arranged at the position, close to the printing mold (7), of the base (1) and around the center line of the conveyor belt (4);

the straight sliding blocks (82) are arranged on the straight sliding rails (81) in a sliding manner;

the connecting rod (83) is arranged at the opposite position of the two straight sliders (82);

the opposite ends of the connecting rods (83) are provided with the N-shaped frames (84);

the cutting knife (85) is arranged between the two N-shaped frames (84), and the cutting knife (85) is positioned right above the conveyor belt (4);

the middle part of the straight sliding rail (81) on one side is rotatably provided with a first rotating shaft (86);

the disc (87) is arranged at one end, close to the conveyor belt (4), of the first rotating shaft (86);

the connecting rod (88) is rotatably arranged at the eccentric position of the side surface of the disc (87) close to the conveyor belt (4), and the connecting rod (88) is rotatably connected with the adjacent connecting rod (83);

the servo motor (89) is arranged on the base (1) and close to the first rotating shaft (86), and an output shaft of the servo motor (89) is in transmission connection with the first rotating shaft (86) through a coupler.

3. Machine according to claim 2, characterized in that the auxiliary forming means (9) comprise:

the fixing frame (91) is symmetrically arranged on the mounting table (5);

the top parts of the two fixing frames (91) are respectively provided with a straight slide rail (92);

the straight slide block (93) is arranged on the straight slide rail (92) in a sliding way;

the first elastic piece (94) is arranged between the straight-moving slide block (93) and the side wall, far away from the conveyor belt (4), of the straight-moving slide rail (92);

the two straight-moving sliding blocks (93) are provided with square sleeves (95) on opposite side walls;

the sliding rod (96) is arranged in the square sleeve (95) in a sliding manner;

a second elastic piece (97), wherein the second elastic piece (97) is arranged between the sliding rod (96) and the square sleeve (95);

a rolling cylinder (98), wherein the rolling cylinder (98) is arranged between the lower parts of the two sliding rods (96), and the rolling cylinder (98) is matched with the printing die (7);

the wire groove plates (99) are arranged on the upper parts of the two fixing frames (91) close to one side of the conveyor belt (4);

the sliding shaft (910) is arranged between the middle parts of the two sliding rods (96), and the sliding shaft (910) is in sliding fit with the wire guide groove plate (99);

the guide wheels (911) are arranged on two sides of the top of the straight slide rail (92);

the bottom of the pull rope (912) and the bottom of the N-shaped frame (84) are both provided with the pull rope (912), and the pull rope (912) bypasses the two guide wheels (911) on the same side and is connected with the square sleeve (95) on the same side.

4. The machine according to claim 3, further comprising:

the mounting plate (10) is arranged on one side, close to the servo motor (89), of the base (1);

the mounting plate (10) is rotatably provided with a second rotating shaft (11);

the four-corner ratchet plate (12) is arranged on one side, close to the conveyor belt (4), of the second rotating shaft (11), 4 semi-arc-shaped grooves are formed in the edge of the four-corner ratchet plate (12), and guide grooves are formed in the positions between every two adjacent semi-arc-shaped grooves;

the first rotating shaft (86) is rotatably installed with the installation plate (10), the fan-shaped plate (13) is arranged at the position, close to the four-corner ratchet plate (12), of the first rotating shaft (86), and the fan-shaped plate (13) is matched with the semi-arc-shaped groove of the four-corner ratchet plate (12);

the crank (14) is arranged at the position, close to the sector plate (13), of the first rotating shaft (86);

a sliding shaft (15) is arranged at the other end of the crank (14), and the sliding shaft (15) is matched with the guide groove of the four-corner ratchet plate (12);

a belt conveying mechanism (16), and a belt conveying mechanism (16) is arranged between the second rotating shaft (11) and the rotating shaft of the roller (3) close to the collecting box (6).

5. The machine according to claim 4, further comprising:

the support frames (17) are arranged on the two bearing seats (2) on one side far away from the cutting mechanism (8);

a scraper (18) is arranged between the two support frames (17), and the scraper (18) is in clearance fit with the conveyor belt (4);

the hopper (19) is arranged between the two support frames (17), and the hopper (19) is positioned under the scraper (18).

Technical Field

The invention belongs to the technical field of food processing, and particularly relates to a strip-shaped steamed twisted roll making machine.

Background

At present, with the acceleration of the pace of life of people, the proportion of cooked wheaten food in staple food of people is heavier and heavier, and the cooked wheaten food with exquisite shape has more appetite.

At present, all through artifical preparation making bar curly dough, the producer keeps flat many chopsticks together, then places the dough on upper portion, uses the cutting knife to cut into one section, then stirs to the outside, and the cutting knife drives the dough and removes the in-process upset, owing to with the chopsticks contact, and then makes into the decorative pattern, because artifical preparation efficiency is lower, unable quick preparation.

Therefore, it is necessary to develop a machine for making a strip-shaped steamed twisted roll with high efficiency and high manufacturing speed to solve the above problems.

Disclosure of Invention

In order to overcome the defects that the manual manufacturing efficiency is low and the rapid manufacturing cannot be realized, the technical problems to be solved are as follows: provides a strip-shaped steamed twisted roll making machine which is rapid in making and high in efficiency.

The technical scheme is as follows: a machine for making a strip-shaped steamed twisted roll, comprising: the two sides of the top of the base are provided with two bearing seats; the roller is arranged between the two bearing seats on the same side; the conveying belt is wound between the two rollers; the middle part of the base is provided with an installation platform close to the roller; the collecting box is arranged on the mounting platform; the upper part of the slideway of the collecting box is provided with a printing mould which is intermittently matched with the conveyor belt; the cutting mechanism is arranged on the base above the conveying belt; and the auxiliary forming mechanism is arranged on the mounting table and matched with the cutting mechanism.

As a further preferable aspect, the cutting mechanism includes: the base is provided with straight slide rails symmetrically around the center line of the conveyor belt at a position close to the printing die; the straight sliding blocks are arranged on the straight sliding rails in a sliding manner; the connecting rods are arranged at opposite positions of the two straight sliding blocks; the opposite end parts of the connecting rods are provided with the N-shaped frames; the cutting knife is arranged between the two N-shaped frames and is positioned right above the conveyor belt; the middle part of the straight sliding rail on one side is rotatably provided with a first rotating shaft; the disc is arranged at one end, close to the conveyor belt, of the first rotating shaft; the connecting rod is rotatably arranged at the eccentric position of the side surface of the disc close to the conveyor belt and is rotatably connected with the close connecting rod; the servo motor is arranged on the base and close to the first rotating shaft, and an output shaft of the servo motor is in transmission connection with the first rotating shaft through a coupler.

As a further preferable mode, the auxiliary forming mechanism includes: the mounting table is symmetrically provided with a fixing frame; the top parts of the two fixing frames are provided with straight slide rails; the straight slide block is arranged on the straight slide rail in a sliding manner; the first elastic piece is arranged between the straight slide block and the side wall of the straight slide rail far away from the conveyor belt; the two straight slide blocks are provided with square sleeves on opposite side walls; the sliding rod is arranged in the square sleeve in a sliding manner; the second elastic piece is arranged between the sliding rod and the square sleeve; the rolling cylinder is arranged between the lower parts of the two sliding rods and matched with the printing die; the upper parts of the two fixing frames are provided with wire groove plates at one side close to the conveyor belt; the sliding shaft is arranged between the middle parts of the two sliding rods and is in sliding fit with the wire guide groove plate; guide wheels are arranged on two sides of the top of the straight slide rail; the stay cord, N shape frame bottom all are provided with the stay cord, and the stay cord is walked around two guide pulleys with one side and is connected with the square cover with one side.

As a further preferable embodiment, the method further comprises: the mounting plate is arranged on one side, close to the servo motor, of the base; the mounting plate is rotatably provided with a second rotating shaft; the four-corner ratchet plate is arranged on one side, close to the conveyor belt, of the second rotating shaft, 4 semi-arc grooves are formed in the edge of the four-corner ratchet plate, and guide grooves are formed in the positions between every two adjacent semi-arc grooves; the first rotating shaft is rotatably installed with the installation plate, the fan-shaped plate is arranged at the position, close to the four-corner ratchet plate, of the first rotating shaft, and the fan-shaped plate is matched with the semi-arc-shaped groove of the four-corner ratchet plate; the crank is arranged at the position, close to the sector plate, of the first rotating shaft; the other end of the crank is provided with a sliding shaft which is matched with the guide groove of the four-corner ratchet plate; and a belt conveying mechanism is arranged between the second rotating shaft and the roller rotating shaft close to the collecting box.

As a further preferable embodiment, the method further comprises: the two bearing seats at one side far away from the cutting mechanism are respectively provided with a support frame; the scraper is arranged between the two support frames and is in clearance fit with the conveyor belt; the hopper is arranged between the two support frames and is positioned under the scraper plate.

Compared with the prior art, the invention has the following advantages: the invention achieves the effects of quick manufacture and high efficiency.

1. The dough is conveyed through the conveying belt, and then the strip-shaped steamed twisted rolls can be quickly manufactured through the matching of the cutting mechanism and the auxiliary forming mechanism.

2. Through the cooperation of four corners ratchet dish, crank and sliding shaft, realize that the cylinder drives the interval conveying that the conveyer belt can realize the dough, through the cooperation with cutting mechanism and supplementary forming mechanism again, accomplish the preparation of bar steamed twisted rolls automatically.

3. The conveyer belt is rotatory around the cylinder, and the conveyer belt contacts with the scraper blade, can scrape off the dough of the adhesion on the conveyer belt, falls into to the collection frame through the hopper.

Drawings

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

FIG. 2 is a schematic view of a first partial body structure according to the present invention.

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

Fig. 4 is a schematic perspective view of an auxiliary forming mechanism according to the present invention.

Fig. 5 is a schematic perspective view of a part of the auxiliary forming mechanism of the present invention.

FIG. 6 is a schematic view of a second partial body structure according to the present invention.

Fig. 7 is a perspective view of a third embodiment of the present invention.

Wherein: 1. the automatic printing machine comprises a base, 2. a bearing seat, 3. a roller, 4. a conveyor belt, 5. a mounting table, 6. a collecting box, 7. a printing die, 8. a cutting mechanism, 81. a straight slide rail, 82. a straight slide block, 83. a connecting rod, 84. an N-shaped frame, 85. a cutting knife, 86. a first rotating shaft, 87. a disk, 88. a connecting rod, 89. a servo motor, 9. an auxiliary forming mechanism, 91. a fixed frame, 92. a straight slide rail, 93. a straight slide block, 94. a first elastic piece, 95. a square sleeve, 96. a slide rod, 97. a second elastic piece, 98. a rolling cylinder, 99. a wire guide groove plate, 910. a slide shaft, 911. a guide wheel, 912. a pull rope, 10. a mounting plate, 11. a second rotating shaft, 12. a four-corner ratchet plate, 13. a sector plate, 14. a crank, 15. a slide shaft, 16. a belt conveying mechanism, 17. a supporting frame, 18.

Detailed Description

The technical solutions in the embodiments of the present invention will be clearly and completely described below, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.

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