Ring machine capable of automatically feeding

By designing a circle machine that can be automatically loaded, the rotation of the steering part and the potential energy of the return spring can be used to realize the automatic delivery of columnar surface agent and circle into circles, solving the problem of low manual operation efficiency in traditional circle machines and improving production efficiency.

CN223157809UActive Publication Date: 2025-07-29HEFEI YONGSHI MASCH MFG CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202422285477.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-19
Publication Date
2025-07-29
Estimated Expiration
2034-09-19

AI Technical Summary

Technical Problem

Traditional circle machines require manual operation and are inefficient.

Method used

A circle machine that can be automatically loaded is designed, including a feeding part, a circle part and a bearing part. The automatic conveying of the columnar surface agent and circle into a circle is achieved through the counterclockwise and clockwise rotation of the steering part, and the automatic return of the steering plate is achieved by using the shrinkage potential energy of the return spring.

Benefits of technology

The automatic loading of the circle machine is realized, which saves labor and improves the circle efficiency.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223157809U_ABST
    Figure CN223157809U_ABST
Patent Text Reader

Abstract

The utility model relates to the technical field of circling machines, in particular to a circling machine capable of automatically feeding, which is characterized in that a bearing part is positioned at the intersection point of extension lines of a blanking part and a circling part, one surface of the bearing part is adjacent to the blanking part, the adjacent surface of the bearing part is adjacent to the circling part, the bearing part comprises a supporting group and a steering part, and the steering part is arranged above the middle of the supporting group and can rotate leftwards and rightwards around the supporting group; when the pressure of the columnar dough agent is balanced with the contraction potential energy of the reset spring, the steering plate rotates to the maximum angle and inclines towards the second conveying belt, the columnar dough agent rolls down to the second conveying belt from the steering plate under the action of self weight and is conveyed to the inner circle of the circle forming machine by the second conveying belt for standby application, and after the columnar dough agent rolls down from the steering plate, the columnar dough agent is conveyed to the second conveying belt to form a circle. Under the action of contraction potential energy of the reset spring, the steering plate rotates around the center shaft in the clockwise direction, returns to the initial balance state and can receive and steer the second columnar surface agent, and the operation is repeated, so that automatic feeding of the rounding machine is completed, operation of a special person is not needed, labor is saved, and the rounding efficiency is improved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The utility model relates to the technical field of circle-forming machines, in particular to a circle-forming machine capable of automatic feeding. Background Art

[0002] A circle-forming machine processes food into a circular shape by bringing the food into contact with a carrier and moving with it, and gradually forming the food into a circular shape under the action of the carrier's circular motion. In food processing, there are many cases where circle-forming operations are required, such as bread, doughnuts, pastries, and candies. The main purpose is to make the outer shape of the dough circular and evenly disperse the internal gas: the texture is fine, and at the same time, through high-speed rotation and kneading, a uniform skin is formed on the dough, so that the gas generated during the next proofing of the dough will not escape, thereby obtaining larger and very uniform pores inside the dough.

[0003] In the traditional circle-forming machine during the circle-forming operation, the strip-shaped dough is manually placed into the circle-forming machine for shaping, which not only requires a dedicated person to operate but also has very low efficiency. Summary of the Utility Model

[0004] The main purpose of the utility model is to provide a circle-forming machine capable of automatic feeding to solve the problems of requiring a dedicated person to operate and low efficiency in the related art.

[0005] To achieve the above object, according to one aspect of the utility model, there is provided a circle-forming machine capable of automatic feeding, including: a feeding part that kneads and cuts the dough into equal columnar bodies and conveys them forward;

[0006] a circle-forming part that is vertically arranged with respect to the feeding part and circles the columnar dough kneaded and cut by the feeding part into a circular shape;

[0007] a receiving part located at the intersection of the extension lines of the feeding part and the circle-forming part. One side of the receiving part is adjacent to the feeding part, and the adjacent side is adjacent to the circle-forming part. The receiving part includes a support group and a turning part. The turning part is arranged above the middle of the support group and can rotate left and right around the support group. When the columnar dough from the feeding part falls into the turning part, the turning part rotates counterclockwise around the support group, and the columnar dough falls from the turning part into the circle-forming part. When the columnar dough falls from the turning part, the turning part rotates clockwise around the support group and returns to its original state to continue receiving the columnar dough conveyed by the feeding part.

[0008] Further, the feeding part includes a feeding machine and a first conveyor belt. The feeding machine kneads and cuts the dough into equal columnar bodies and arranges them on the first conveyor belt, and the first conveyor belt conveys the columnar dough to the receiving part.

[0009] Further, the circular part includes a circular machine and a second conveyor belt. The second conveyor belt transports the columnar dough agent conveyed by the receiving part into the circular machine, and the circular machine circles the columnar dough agent into a circular shape.

[0010] Further, the support group includes two support plates, two guide holes, and a bottom plate. The support plates are fixedly arranged on two pairs of edges on the upper surface of the bottom plate, and the guide holes are respectively located on the left side of the front of the support plates.

[0011] Further, the turning part includes a turning plate group and a reset group. The turning plate group receives the columnar dough agent conveyed by the first conveyor belt. The columnar dough agent presses the turning plate group to rotate, causing the columnar dough agent to roll onto the second conveyor belt. When the columnar dough agent rolls off the turning plate group, the reset group drives the turning plate group to return to the upright position.

[0012] Further, the turning plate group includes a turning plate, a slot hole, and several guide rollers. The turning plate is U-shaped. A slot hole is provided on the upper surface of the turning plate close to the second conveyor belt side. The guide rollers are all arranged in the slot hole and are rotatably connected to the turning plate.

[0013] Further, the reset group includes two support shafts, two limit pieces, a middle shaft, and two reset springs. The middle shaft is rotatably arranged at the bottom of the turning plate. Both ends of the middle shaft are fixedly connected to the support plates. The reset springs are rotatably sleeved at both ends of the middle shaft. One antenna of the reset spring is fixedly connected to the side of the turning plate, and the other antenna is fixedly connected to the inner wall of the support plate.

[0014] Further, the support shafts are fixedly arranged on the front and back sides of the end of the turning plate with the slot hole and can move in the guide holes. The limit pieces are fixedly arranged at the outer ends of the support shafts and are located outside the guide holes to limit the movement of the support shafts in the guide holes.

[0015] Compared with the prior art, the present utility model has the following beneficial effects: When the pressure of the columnar dough agent is balanced with the contraction potential energy of the reset spring, the turning plate rotates to the maximum angle and inclines towards the second conveyor belt. The columnar dough agent rolls from the turning plate to the second conveyor belt under the action of its own weight and is sent into the circular machine by the second conveyor belt to be circled into a circular shape for standby. When the columnar dough agent rolls off the turning plate, the turning plate cannot maintain balance under the force, and under the action of the contraction potential energy of the reset spring, the turning plate rotates clockwise around the middle shaft and returns to the initial balance state, can receive the second columnar dough agent and turn it. In this way, the automatic feeding of the circular machine is completed, without the need to arrange a special person to operate, saving labor and improving the circular efficiency. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 Schematic diagram of the whole of the present utility model Figure 1 ;

[0017] Figure 2Overall schematic diagram of the present utility model Figure 2 ;

[0018] Figure 3 Schematic structural diagram of the receiving part of the present utility model;

[0019] Figure 4 Schematic structural diagram of the steering part of the present utility model.

[0020] Illustration description:

[0021] 1. Blanking part; 11. Blanking machine; 12. First conveyor belt;

[0022] 2. Circularizing part; 21. Circularizing machine; 22. Second conveyor belt;

[0023] 3. Receiving part; 31. Support plate; 32. Guide hole; 33. Bottom plate; 34. Steering part; 341. Steering plate; 342. Slot hole; 343. Guide roller; 344. Support shaft; 345. Limit piece; 346. Central shaft; 347. Return spring. Specific implementation manner

[0024] To further elaborate on the technical means and effects adopted by the present utility model to achieve the predetermined utility model purpose, the following, in combination with the attached drawings and preferred embodiments, details the specific implementation manner, structure, features and their effects of the present utility model as follows.

[0025] Please refer to Figures 1 to 4 , this embodiment provides a circularizing machine capable of automatic feeding, including: a blanking part 1, which kneads and cuts the dough into equal columnar bodies and conveys them forward;

[0026] A circularizing part 2, which is vertically arranged with the blanking part 1, and the circularizing part 2 circles the columnar dough kneaded and cut by the blanking part 1 into a circular shape;

[0027] A receiving part 3, which is located at the intersection of the extension lines of the blanking part 1 and the circularizing part 2. One side of the receiving part 3 is adjacent to the blanking part 1, and the adjacent side is adjacent to the circularizing part 2. The receiving part 3 includes a support group and a steering part 34. The steering part 34 is arranged above the middle of the support group and can rotate left and right around the support group. When the columnar dough of the blanking part 1 falls into the steering part 34, the steering part 34 rotates counterclockwise around the support group, and the columnar dough falls from the steering part 34 into the circularizing part 2. When the columnar dough falls from the steering part 34, the steering part 34 rotates clockwise around the support group and returns to the original state, and can continue to receive the columnar dough conveyed by the blanking part 1.

[0028] The blanking part 1 includes a blanking machine 11 and a first conveyor belt 12. The blanking machine 11 kneads and cuts the dough into equal columnar bodies and arranges them on the first conveyor belt 12, and the first conveyor belt 12 conveys the columnar dough to the receiving part 3.

[0029] The circular part 2 includes a circular machine 21 and a second conveyor belt 22. The second conveyor belt 22 conveys the columnar surface agent conveyed by the receiving part 3 into the circular machine 21, and the circular machine 21 circles the columnar surface agent into a circular shape.

[0030] The support group includes two support plates 31, two guide holes 32 and a bottom plate 33. The support plates 31 are fixedly arranged on two pairs of edges on the upper surface of the bottom plate 33, and the guide holes 32 are respectively located on the left side of the front of the support plates 31.

[0031] The turning part 34 includes a turning plate group and a reset group. The turning plate group receives the columnar surface agent conveyed by the first conveyor belt 12. The columnar surface agent presses the turning plate group to rotate, so that the columnar surface agent rolls onto the second conveyor belt 22. When the columnar surface agent rolls off the turning plate group, the reset group drives the turning plate group to return to the upright position.

[0032] The turning plate group includes a turning plate 341, a slot hole 342 and a number of guide rollers 343. The turning plate 341 is U-shaped. Among them, a slot hole 342 is provided on the upper surface of the turning plate 341 close to the second conveyor belt 22. The guide rollers 343 are all arranged in the slot hole 342 and are rotatably connected to the turning plate 341. When the columnar surface agent on the first conveyor belt 12 reaches the guide rollers 343, the columnar surface agent drives the guide rollers 343 to rotate under the push of the first conveyor belt 12. The friction between the rotating guide rollers 343 and the columnar surface agent is small, which is more conducive to the columnar surface agent entering the turning plate 341.

[0033] The reset group includes two support shafts 344, two limit pieces 345, a middle shaft 346 and two reset springs 347. The middle shaft 346 is rotatably arranged at the bottom of the turning plate 341, and both ends of the middle shaft 346 are fixedly connected to the support plates 31. The reset springs 347 are all rotatably sleeved at both ends of the middle shaft 346. One tentacle of the reset spring 347 is fixedly connected to the side of the turning plate 341, and the other tentacle is fixedly connected to the inner wall of the support plate 31. When the turning plate 341 rotates counterclockwise under the pressure of the columnar surface agent, the reset spring 347 is stretched. After the columnar surface agent leaves the turning plate 341, the reset spring 347 rebounds and returns the turning plate 341 to its original position.

[0034] The support shafts 344 are fixedly arranged on the front and back sides of one end of the turning plate 341 with the slot hole 342, and can move in the guide holes 32. The guide holes 32 limit the moving direction of the support shafts 344 to prevent the turning plate 341 from skewing, resulting in the columnar surface agent not being able to accurately enter the second conveyor belt 22. The limit pieces 345 are all fixedly arranged at the outer ends of the support shafts 344 and are located outside the guide holes 32 to limit the movement of the support shafts 344 in the guide holes 32.

[0035] The blanking machine 11 cuts the kneaded dough pieces into equal columnar bodies and arranges them on the first conveyor belt 12 to convey them to the receiving part 3. After the columnar dough pieces reach the edge of the first conveyor belt 12, their ends leave the first conveyor belt 12 and droop onto the guiding roller 343. Under the combined action of their own weight and the thrust of the first conveyor belt 12, the columnar dough pieces move forward along the guiding roller 343 until they completely leave the first conveyor belt 12 and fully fall onto the guiding roller 343. The columnar dough pieces exert a downward pressure on the turning plate 341, causing the turning plate 341 to rotate counterclockwise around the central axis 346. One antenna of the return spring 347 rotates counterclockwise together with the turning plate 341, and the return spring 347 generates a contraction potential energy. When the pressure of the columnar dough pieces is balanced with the contraction potential energy of the return spring 347, the turning plate 341 rotates to the maximum angle and inclines towards the second conveyor belt 22. The columnar dough pieces roll from the turning plate 341 onto the second conveyor belt 22 under their own weight and are sent by the second conveyor belt 22 into the circularizing machine 21 to be circularized and reserved. When the columnar dough pieces roll off the turning plate 341, the turning plate 341 cannot maintain balance under the force, and under the action of the contraction potential energy of the return spring 347, the turning plate 341 rotates clockwise around the central axis 346 and returns to the initial balanced state, capable of receiving the second columnar dough piece and turning it. In this way, the automatic feeding of the circularizing machine is completed, eliminating the need for a dedicated operator, saving labor and improving the circularizing efficiency.

[0036] The above is only a preferred embodiment of the present invention and does not impose any form of limitation on the present invention. Although the present invention has been disclosed above with the preferred embodiment, it is not intended to limit the present invention. Any person skilled in the art can make some changes or modifications to it as equivalent embodiments with equivalent changes within the scope of the technical solution of the present invention. However, as long as it does not depart from the content of the technical solution of the present invention, any brief modification, equivalent change and modification made to the above embodiments based on the technical essence of the present invention still fall within the scope of the technical solution of the present invention.

Claims

1. A circle-rounding machine capable of automatic feeding, characterized in that, Comprising: A blanking part (1) which kneads and cuts the dough into equal columnar bodies and conveys them forward; A circularizing part (2) which is arranged perpendicular to the blanking part (1), and the circularizing part (2) circularizes the columnar dough cut and kneaded by the blanking part (1) into a circular shape; A receiving part (3) which is located at the intersection of the extension lines of the blanking part (1) and the circularizing part (2). One side of the receiving part (3) is adjacent to the blanking part (1), and the adjacent side is adjacent to the circularizing part (2). The receiving part (3) includes a support group and a turning part (34). The turning part (34) is arranged above the middle of the support group and can rotate left and right around the support group. When the columnar dough of the blanking part (1) falls into the turning part (34), the turning part (34) rotates counterclockwise around the support group, and the columnar dough falls from the turning part (34) into the circularizing part (2). When the columnar dough falls from the turning part (34), the turning part (34) rotates clockwise around the support group and returns to its original state, and can continue to receive the columnar dough conveyed by the blanking part (1).

2. The circle-rounding machine capable of automatic feeding according to claim 1, wherein, The blanking part (1) includes a blanking machine (11) and a first conveyor belt (12). The blanking machine (11) kneads and cuts the dough into equal columnar bodies and arranges them on the first conveyor belt (12), and the first conveyor belt (12) conveys the columnar dough to the receiving part (3).

3. The circle rounding machine capable of automatic feeding according to claim 1, wherein The circularizing part (2) includes a circularizing machine (21) and a second conveyor belt (22). The second conveyor belt (22) conveys the columnar dough conveyed by the receiving part (3) into the circularizing machine (21), and the circularizing machine (21) circularizes the columnar dough into a circular shape.

4. The circle rounding machine capable of automatic feeding according to claim 1, characterized in that, The support group includes two support plates (31), two guide holes (32) and a bottom plate (33). The support plates (31) are fixedly arranged on two pairs of edges on the upper surface of the bottom plate (33), and the guide holes (32) are respectively located on the left side of the front of the support plates (31).

5. The circle rounding machine capable of automatic feeding according to claim 1, wherein The turning part (34) includes a turning plate group and a reset group. The turning plate group receives the columnar dough conveyed by the first conveyor belt (12), and the columnar dough presses the turning plate group to rotate, so that the columnar dough rolls onto the second conveyor belt (22). When the columnar dough rolls off the turning plate group, the reset group drives the turning plate group to return to the upright position.

6. The circle rounding machine capable of automatic feeding according to claim 5, characterized in that The turning plate group includes a turning plate (341), a slot hole (342) and a plurality of guide rollers (343). The turning plate (341) is U-shaped. A slot hole (342) is arranged on the upper surface of the turning plate (341) on the side close to the second conveyor belt (22), and the guide rollers (343) are all arranged in the slot hole (342) and are rotatably connected to the turning plate (341).

7. The circle rounding machine capable of automatic feeding according to claim 6, characterized in that, The reset group includes two support shafts (344), two limit pieces (345), a middle shaft (346) and two reset springs (347). The middle shaft (346) is rotatably arranged at the bottom of the steering plate (341), and both ends of the middle shaft (346) are fixedly connected to the support plate (31). The reset springs (347) are rotatably sleeved at both ends of the middle shaft (346), one antenna of the reset spring (347) is fixedly connected to the side of the steering plate (341), and the other antenna is fixedly connected to the inner wall of the support plate (31).

8. The circle rounding machine capable of automatic feeding according to claim 7, wherein The support shafts (344) are fixedly arranged on the front and rear sides of one end of the steering plate (341) with a slot hole (342), and can move in the guide hole (32). The limit pieces (345) are fixedly arranged at the outer ends of the support shafts (344) and are located outside the guide hole (32) to limit the movement of the support shafts (344) in the guide hole (32).