An automatic dough stick counting machine

CN224797382UActive Publication Date: 2026-09-25CHANGSHA MELEHUI FOOD TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202522360631.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-11-06
Publication Date
2026-09-25
Estimated Expiration
2035-11-06

AI Technical Summary

Technical Problem

[0003]目前,在生胚油条工厂生产中,一般生胚油条数量是人工点数,人工点数有时会出现不准确现象,导致袋中油条缺少等情况,在工厂生产中人工点数岗位需要多个人,加重工厂负担,而且人工点数岗位接触生胚油条会造成冻手等情况,无法适应大规模生产的需求

Benefits of technology

[0013]1、本实用新型提供了一种生胚油条自动点数机,该生胚油条自动点数机包括理料机构以及分别设置于理料机构两端的放料机构和运料机构,整体结构简单,设计合理,工作时放料机构将生胚油条送至理料机构,经由设置于理料机构上的点数机构进行点数后送至运料机构,经由设置于运料机构上的挡料机构挡料后送至送袋机构进行集中输送,对生胚油条的输送、点数和装袋的过程采用大量自动化工序,大大减少了人工操作,提升了自动化程度,使该自动点数机能适应大规模生产的需求。

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Abstract

The utility model relates to quick -frozen green embryo fried bread stick equipment technical field, concretely is a kind of green embryo fried bread stick automatic counting machine, the green embryo fried bread stick automatic counting machine includes material arranging mechanism and respectively setting in the material arranging mechanism both ends and material placing mechanism and material conveying mechanism, green embryo fried bread stick is sent to material arranging mechanism via material placing mechanism, after sending to material conveying mechanism via the counting mechanism of setting on material arranging mechanism, after blocking material via the material blocking mechanism of setting on material conveying mechanism, it is sent to bag feeding mechanism and is concentrated to convey, and the counting mechanism includes counting support platform and the first sensor and counting cylinder fixed on counting support platform, counting cylinder is arranged at the side of first sensor, and the bottom of counting cylinder is fixed with first lifting cylinder, and counting plate is connected with the output end of first lifting cylinder. The green embryo fried bread stick automatic counting machine adopts a large number of automatic process to the conveying, counting and bagging process of green embryo fried bread stick, greatly reduces manual operation, and improves the degree of automation.
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Description

Technical Field

[0001] This utility model relates to the technical field of quick-frozen raw dough stick equipment, specifically an automatic counting machine for raw dough sticks. Background Technology

[0002] Raw dough sticks refer to semi-finished dough sticks that have undergone preliminary processing but have not yet been fried. They are pre-fermented and shaped in the factory and then preserved using quick-freezing technology. They can be fried directly without thawing before use. This type of product is mainly targeted at commercial settings such as breakfast shops and street vendors.

[0003] Currently, in the production of raw fried dough sticks, the quantity of raw dough sticks is usually counted manually. This manual counting can sometimes be inaccurate, leading to shortages in the bags. Furthermore, the manual counting position requires multiple people, increasing the factory's workload. Moreover, the workers handling the raw dough sticks are prone to hand injuries and cold hands, making this method unsuitable for large-scale production. Therefore, the inventor has developed an automatic raw dough fried dough stick counting machine. Utility Model Content

[0004] The purpose of this invention is to provide a safe, accurate, hygienic, and intelligent automatic counting machine for raw fried dough sticks. This automatic counting machine for raw fried dough sticks has the advantages of simple structure, reasonable design, and a large number of automated processes for conveying, counting, and bagging raw fried dough sticks, which greatly reduces manual operation, improves the degree of automation, and can meet the needs of large-scale production, thus solving the problems mentioned in the above-mentioned technical background.

[0005] To achieve the above objectives, this utility model provides the following technical solution: an automatic counting machine for raw fried dough sticks, comprising a feeding mechanism and a feeding mechanism and a conveying mechanism respectively disposed at both ends of the feeding mechanism. The feeding mechanism delivers the raw fried dough sticks to the feeding mechanism, where they are counted by a counting mechanism and then conveyed to the conveying mechanism. The conveying mechanism then blocks the dough sticks and delivers them to a bag-feeding mechanism for centralized transport. The counting mechanism includes a counting support platform and a first sensor and a counting cylinder fixed to the counting support platform. The counting cylinder is configured with... On one side of the first sensor, and at the bottom of the counting cylinder, a first lifting cylinder is fixed. A counting plate is connected to the output end of the first lifting cylinder. The material blocking mechanism includes an upper support pile, a material blocking cylinder fixed on the upper support pile, and a back plate connected to the output end of the material blocking cylinder. A material blocking strip is fixed to one end of the back plate near the counting support platform. The bag feeding mechanism includes a bag feeding support platform, a second sensor and a bag feeding cylinder fixed on the bag feeding support platform. The bag feeding cylinder is located on one side of the second sensor, and at the bottom of the bag feeding cylinder, a second lifting cylinder is fixed. A bag feeding plate is connected to the output end of the second lifting cylinder.

[0006] Preferably, the feeding mechanism includes a feeding bracket, a feeding motor disposed on one side of the feeding bracket, and a feeding conveyor belt mounted on the feeding bracket. The output end of the feeding motor is connected to a first reducer, which is fixed on the feeding bracket. The end of the first reducer away from the feeding motor is connected to the feeding conveyor belt, so that the first reducer can drive the feeding conveyor belt to run. A first baffle is provided on both sides of the upper surface of the feeding conveyor belt. The two first baffles are respectively fixed on two sets of first supports, and the two sets of first supports are fixed on the feeding bracket.

[0007] Preferably, the material handling mechanism includes a material handling bracket, a material handling motor disposed on one side of the material handling bracket, and a material handling conveyor belt mounted on the material handling bracket. The output end of the material handling motor is connected to a second reducer, which is fixed on the material handling bracket. The end of the second reducer away from the material handling motor is connected to the material handling conveyor belt, so that the second reducer can drive the material handling conveyor belt to run. Second baffles are provided on both sides of the upper surface of the material handling conveyor belt. The two second baffles are respectively fixed on two sets of second supports. The two sets of second supports and the point support platform are all fixed on the material handling bracket.

[0008] Preferably, the material conveying mechanism includes a material conveying bracket, a material conveying motor fixed on the material conveying bracket, and a material conveying belt running on the material conveying bracket. The material conveying motor is placed horizontally and located below the material conveying bracket. The output end of the material conveying motor is provided with a transmission structure, which includes two sprockets and a chain running on the two sprockets. One sprocket is fixedly connected to the output end of the material conveying motor, and the other sprocket is connected to the material conveying belt.

[0009] Preferably, a cover plate is also fixed on the material conveying bracket. The cover plate is sleeved on the outside of the chain and the two sprockets, and the cover plate is used to protect the chain and the two sprockets.

[0010] Preferably, there are two first sensors, which are symmetrically distributed on the counting support platform. The working paths of the two first sensors are both vertical. When both first sensors detect the raw dough sticks, the counting cylinder drives the first lifting cylinder and the counting plate to move horizontally, so that the counting plate pushes ten dough sticks onto the conveyor belt at one time.

[0011] Preferably, a bagging mechanism is provided at the end of the material conveying mechanism away from the material sorting mechanism. The bagging mechanism includes a rotary cylinder fixed on the material conveying support and a rotary shaft connected to the output end of the rotary cylinder. A rotary guide plate is fixed at the end of the rotary shaft away from the rotary cylinder, and a fixed guide plate is provided on one side of the rotary guide plate. The rotary guide plate and the fixed guide plate are provided at both ends of the material conveying belt, and the fixed guide plate is fixed on the material conveying support. Both the rotary guide plate and the fixed guide plate are vertically arranged.

[0012] Compared with the prior art, the beneficial effects of this utility model are as follows:

[0013] 1. This utility model provides an automatic counting machine for raw fried dough sticks. The automatic counting machine for raw fried dough sticks includes a material sorting mechanism and a feeding mechanism and a conveying mechanism respectively set at both ends of the material sorting mechanism. The overall structure is simple and the design is reasonable. During operation, the feeding mechanism sends the raw fried dough sticks to the material sorting mechanism. After being counted by the counting mechanism set on the material sorting mechanism, they are sent to the conveying mechanism. After being blocked by the material blocking mechanism set on the conveying mechanism, they are sent to the bag feeding mechanism for centralized transportation. The process of conveying, counting and bagging raw fried dough sticks adopts a large number of automated processes, which greatly reduces manual operation, improves the degree of automation, and enables the automatic counting machine to meet the needs of large-scale production.

[0014] 2. The counting mechanism in this utility model includes a counting support platform and a first sensor and a counting cylinder fixed on the counting support platform. The counting cylinder is located on one side of the first sensor, and a first lifting cylinder is fixed at the bottom of the counting cylinder. A counting plate is connected to the output end of the first lifting cylinder. The pushing action is only performed when the two first sensors detect the material at the same time, which ensures the accuracy of counting the raw dough sticks.

[0015] 3. The material blocking mechanism in this utility model includes an upper support pile, a material blocking cylinder fixed on the upper support pile, and a back plate connected to the output end of the material blocking cylinder. A material blocking strip is fixed at one end of the back plate near the counting support table. The material blocking strip can make the raw dough sticks neatly arranged, or it can block two layers of raw dough sticks to achieve different packaging specifications.

[0016] 4. The bag feeding mechanism in this utility model includes a bag feeding support platform, a second sensor and a bag feeding cylinder fixed on the bag feeding support platform. The bag feeding cylinder is located on one side of the second sensor, and a second lifting cylinder is fixed at the bottom of the bag feeding cylinder. The output end of the second lifting cylinder is connected to a bag feeding plate. The working path of the second sensor is vertical. When the second sensor detects the raw fried dough stick, the bag feeding cylinder works to drive the second lifting cylinder and the bag feeding plate to move horizontally, neatly feeding the fried dough stick into the packaging bag on the bagging mechanism, completing the automated bagging, which helps to improve efficiency.

[0017] 5. In this utility model, a bagging mechanism is provided at the end of the material conveying mechanism away from the material sorting mechanism. The bagging mechanism includes a rotary cylinder fixed on the material conveying bracket and a rotary shaft connected to the output end of the rotary cylinder. A rotary guide plate is fixed at the end of the rotary shaft away from the rotary cylinder, and a fixed guide plate is provided on one side of the rotary guide plate. The rotary guide plate and the fixed guide plate are located at both ends of the material conveying belt. The rotary cylinder drives the rotary guide plate to rotate, which can easily put the bag on the rotary guide plate and the fixed blade, thereby effectively opening the packaging bag and reducing the intensity of manual labor. Attached Figure Description

[0018] Figure 1This is a top view of the present invention.

[0019] Figure 2 This is a schematic diagram of the feeding mechanism of this utility model.

[0020] Figure 3 This is a schematic diagram of the material handling mechanism and the counting mechanism of this utility model.

[0021] Figure 4 This is a schematic diagram of the counting mechanism of this utility model.

[0022] Figure 5 This is one of the schematic diagrams of the material conveying mechanism, material blocking mechanism, bag feeding mechanism and bagging mechanism of this utility model.

[0023] Figure 6 This is the second schematic diagram of the material conveying mechanism, material blocking mechanism, bag feeding mechanism, and bagging mechanism of this utility model.

[0024] The reference numerals and names in the figure are as follows:

[0025] 1. Feeding mechanism; 11. Feeding support; 12. Feeding motor; 13. First reducer; 14. Feeding conveyor belt; 15. First baffle; 16. First support; 2. Sorting mechanism; 21. Sorting support; 22. Sorting motor; 23. Second reducer; 24. Sorting conveyor belt; 25. Second baffle; 26. Second support; 3. Conveying mechanism; 31. Conveying support; 32. Conveying motor; 33. Sprocket; 34. Chain; 35. Conveying conveyor belt; 36. Cover plate; 4. Counting machine Structure; 41. Counting support platform; 42. First sensor; 43. Counting cylinder; 44. First lifting cylinder; 45. Counting plate; 5. Material blocking mechanism; 51. Upper support pile; 52. Material blocking cylinder; 53. Back plate; 54. Material blocking strip; 6. Bag feeding mechanism; 61. Bag feeding support platform; 62. Second sensor; 63. Bag feeding cylinder; 64. Second lifting cylinder; 65. Bag feeding plate; 7. Bag covering mechanism; 71. Rotary cylinder; 72. Rotary shaft; 73. Rotary guide plate; 74. Fixed guide plate. Detailed Implementation

[0026] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0027] In the description of the embodiments of this utility model, it should be understood that the terms "length," "width," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," and "outer," etc., indicating the orientation or positional relationship, are based on the orientation or positional relationship shown in the accompanying drawings and are only for the convenience of describing the embodiments of this utility model and simplifying the description. They do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this utility model. Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of indicated technical features. Thus, a feature defined with "first" or "second" may explicitly or implicitly include one or more of that feature. In the description of the embodiments of this utility model, "multiple" means two or more, unless otherwise explicitly specified.

[0028] In this embodiment of the invention, unless otherwise explicitly specified and limited, the terms "installation," "connection," "linking," and "fixing," etc., should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal communication of two components or the interaction between two components. Those skilled in the art can understand the specific meaning of the above terms in this embodiment of the invention according to the specific circumstances.

[0029] Please see Figure 1 An embodiment of this utility model is provided: an automatic counting machine for raw fried dough sticks. The automatic counting machine for raw fried dough sticks includes a material handling mechanism 2 and a feeding mechanism 1 and a conveying mechanism 3 respectively disposed at both ends of the material handling mechanism 2. The raw fried dough sticks are fed to the material handling mechanism 2 via the feeding mechanism 1, counted by the counting mechanism 4 disposed on the material handling mechanism 2, and then sent to the conveying mechanism 3. After being blocked by the material blocking mechanism 5 disposed on the conveying mechanism 3, they are sent to the bag feeding mechanism 6 for centralized conveying. The counting mechanism 4 is disposed at the end of the material handling mechanism 2, and a bagging mechanism 7 is disposed at the end of the conveying mechanism 3 away from the material handling mechanism 2.

[0030] Please see Figure 2The feeding mechanism 1 includes a feeding bracket 11, a feeding motor 12 disposed on one side of the feeding bracket 11, and a feeding conveyor belt 14 mounted on the feeding bracket 11. The output end of the feeding motor 12 is connected to a first reducer 13, which is fixed on the feeding bracket 11. The end of the first reducer 13 away from the feeding motor 12 is connected to the feeding conveyor belt 14, so that the first reducer 13 can drive the feeding conveyor belt 14 to run. Two first baffles 15 are provided on both sides of the upper surface of the feeding conveyor belt 14. The two first baffles 15 are respectively fixed on two sets of first supports 16, which are fixed on the feeding bracket 11. The two first baffles 15 are slightly higher than the upper surface of the feeding conveyor belt 14, which can guide the raw dough strips on the feeding conveyor belt 14 without interfering with the operation of the feeding conveyor belt 14.

[0031] Please see Figure 3 The material handling mechanism 2 includes a material handling bracket 21, a material handling motor 22 disposed on one side of the material handling bracket 21, and a material handling conveyor belt 24 mounted on the material handling bracket 21. The output end of the material handling motor 22 is connected to a second reducer 23. The second reducer 23 is fixed on the material handling bracket 21, and the end of the second reducer 23 away from the material handling motor 22 is connected to the material handling conveyor belt 24, so that the second reducer 23 can drive the material handling conveyor belt 24 to run. A second baffle 25 is provided on both sides of the upper end face of the material handling conveyor belt 24. The two second baffles 25 are respectively fixed on two sets of second supports 26. The two sets of second supports 26 and the counting support platform 41 are all fixed on the material handling bracket 21. The counting mechanism 4 includes a counting support platform 41 and a first sensor 42 and a counting cylinder 43 fixed on the counting support platform 41.

[0032] Please see Figure 4 The counting cylinder 43 is located on one side of the first sensor 42, and the bottom of the counting cylinder 43 is fixed with a first lifting cylinder 44. The output end of the first lifting cylinder 44 is connected to a counting plate 45. The two second baffles 25 and the counting plate 45 are both located above the material handling conveyor belt 24, and the two second baffles 25 and the counting plate 45 are slightly higher than the upper surface of the material handling conveyor belt 24. The two second baffles 25 can guide the raw dough sticks on the material handling conveyor belt 24, but do not interfere with the operation of the material handling conveyor belt 24. There are two first sensors 42, and the two first sensors 42 are symmetrically distributed on the counting support platform 41. The working path of the two first sensors 42 is vertical. When both first sensors 42 detect raw dough sticks, the counting cylinder 43 works to drive the first lifting cylinder 44 and the counting plate 45 to move horizontally, so that the counting plate 45 pushes ten dough sticks onto the material handling conveyor belt 35 of the material handling mechanism 3 at one time. The structure of the material handling conveyor belt 35 is shown below.

[0033] Please see Figure 5The material conveying mechanism 3 includes a material conveying bracket 31, a material conveying motor 32 fixed on the material conveying bracket 31, and a material conveying conveyor belt 35 running on the material conveying bracket 31. The material conveying motor 32 is horizontally placed and located below the material conveying bracket 31. The output end of the material conveying motor 32 is provided with a transmission structure, which includes two sprockets 33 and a chain 34 running on the two sprockets 33. One sprocket 33 is fixedly connected to the output end of the material conveying motor 32, and the other sprocket 33 is connected to the material conveying conveyor belt 35. The bag feeding mechanism 6 includes a bag feeding support platform 61, a second sensor 62 fixed on the bag feeding support platform 61, and a bag feeding cylinder 63. The bag feeding cylinder 63 is located on one side of the second sensor 62, and a second lifting cylinder 64 is fixed to the bottom of the bag feeding cylinder 63. The output end of the second lifting cylinder 64 is connected to the bag feeding plate 65. The working path of the second sensor 62 is vertical. The second sensor 62 is located on... At the end of the bag feeding support platform 61 away from the material blocking mechanism 5, when the second sensor 62 detects 10 raw dough sticks, the bag feeding cylinder 63 works to drive the second lifting cylinder 64 and the bag feeding plate 65 to move horizontally, neatly feeding the dough sticks into the packaging bag on the bagging mechanism 7. In this embodiment, the first sensor 42 and the second sensor 62 are both photoelectric switches, model E3F-DS30C4. The counting cylinder 43 and the bag feeding cylinder 63 are both rodless cylinders. The bagging mechanism 7 includes a rotary cylinder 71 fixed on the material conveying bracket 31 and a rotary shaft 72 connected to the output end of the rotary cylinder 71. A rotary guide plate 73 is fixed at the end of the rotary shaft 72 away from the rotary cylinder 71. A fixed guide plate 74 is provided on one side of the rotary guide plate 73. The rotary guide plate 73 and the fixed guide plate 74 are provided at both ends of the material conveying belt 35. The fixed guide plate 74 is fixed on the material conveying bracket 31. Both the rotary guide plate 73 and the fixed guide plate 74 are vertically arranged.

[0034] Please see Figure 6 A cover plate 36 is also fixed on the material conveying bracket 31. The cover plate 36 is sleeved on the outside of the chain 34 and the two sprockets 33, and the cover plate 36 is used to protect the chain 34 and the two sprockets 33. Figure 5The material conveying mechanism 3 shown has removed the cover plate 36, making it easier to see the structure inside the cover plate 36. The material blocking mechanism 5 includes an upper support pile 51, a material blocking cylinder 52 fixed on the upper support pile 51, and a back plate 53 connected to the output end of the material blocking cylinder 52. The material blocking cylinder 52 is vertically arranged. A material blocking strip 54 is fixed at one end of the back plate 53 near the counting support table 41. The material blocking strip 54 is horizontally arranged and has a large thickness, which can block two layers of raw dough sticks to achieve different packaging specifications. The back plate 53, the material blocking strip 54, and the bag feeding plate 65 are all arranged above the material conveying belt 35, and the back plate 53, the material blocking strip 54, and the bag feeding plate 65 are all slightly higher than the upper end surface of the material conveying belt 35. The material blocking strip 54 can block the raw dough sticks on the material handling conveyor belt 24. The upper support pile 51 and the bag feeding support table 61 are both fixed on the material conveying bracket 31.

[0035] Working principle: Please refer to the following again. Figures 1 to 6In the operation of this utility model, the feeding motor 12, the sorting motor 22, and the conveying motor 32 are driven to work. First, the two ends of the packaging bag are respectively fitted onto the rotating guide plate 73 and the fixed guide plate 74. The structure of the packaging bag is similar to that of a plastic bag with two handles in the prior art. Several raw dough sticks are conveyed to the end of the feeding conveyor belt 14 away from the sorting conveyor belt 24. The feeding conveyor belt 14 and the sorting conveyor belt 24 are connected by a blade belt to ensure the smooth transportation of the raw dough sticks and prevent the raw dough sticks from tilting. The operation of the feeding motor 12 drives the first reducer 13 and the feeding conveyor belt 14 to work, so that the feeding conveyor belt 14 can send several raw dough sticks to the sorting conveyor belt 24. When several raw dough sticks reach the bottom of the counting support platform 41, they are simultaneously detected and counted by two first sensors 42. When the number reaches 10, the first sensor 42 controls the blocking cylinder 52. The back plate 53 and the baffle 54 move upward, creating a large gap between the baffle 54 and the conveyor belt 35, allowing the oil sticks to pass through. Then, the first sensor 42 controls the counting cylinder 43 to move the first lifting cylinder 44 and the counting plate 45, causing the counting plate 45 to move from the side of the counting support platform 41 away from the baffle 54 to the side closer to the baffle 54. The counting plate 45 pushes 10 raw oil sticks onto the conveyor belt 35 at once, and delivers the raw oil sticks to the area between the bag feeding plate 65 and the rotating guide plate 73. When the second sensor 62 detects 10 raw oil sticks, the second sensor 62 controls the bag feeding cylinder 63 to operate, using the translation of the second lifting cylinder 64 and the bag feeding plate 65 to deliver the 10 raw oil sticks into the packaging bag. Then, the rotating cylinder 71 operates, driving the rotating shaft 72 and the rotating guide plate 73 to rotate, performing automatic bag sealing. In the above process, both the first sensor 42 and the second sensor 62 are photoelectric switches. The core principle of photoelectric switches controlling the cylinder is to trigger the solenoid valve to act through photoelectric signals, thereby driving the cylinder to extend and retract. This technology is existing technology and will not be elaborated here.

[0036] It will be apparent to those skilled in the art that this invention is not limited to the details of the exemplary embodiments described above, and that it can be implemented in other specific forms without departing from the spirit or essential characteristics of this invention. Therefore, the embodiments should be considered illustrative and non-limiting in all respects, and the scope of this invention is defined by the appended claims rather than the foregoing description. Thus, it is intended that all variations falling within the meaning and scope of equivalents of the claims be included within this invention. No reference numerals in the claims should be construed as limiting the scope of the claims.

Claims

1. An automatic counting machine for raw fried dough sticks, characterized in that: The system includes a material handling mechanism (2) and a feeding mechanism (1) and a conveying mechanism (3) respectively located at both ends of the material handling mechanism (2). The feeding mechanism (1) delivers the raw dough sticks to the material handling mechanism (2), which counts them via a counting mechanism (4) located on the material handling mechanism (2) and then delivers them to the conveying mechanism (3). The conveying mechanism (3) then blocks the dough sticks via a blocking mechanism (5) located on the conveying mechanism (3). Once the raw dough sticks have been counted, they are delivered to a bag-feeding mechanism (6) for centralized conveying. The counting mechanism (4) includes a counting support platform (41) and a first sensor (42) and a counting cylinder (43) fixed on the counting support platform (41). The counting cylinder (43) is located on one side of the first sensor (42), and a first lifting cylinder (44) is fixed to the bottom of the counting cylinder (43). The output end of the first lifting cylinder (44) is connected to the counting plate (45). The material blocking mechanism (5) includes an upper support pile (51), a material blocking cylinder (52) fixed on the upper support pile (51), and a back plate (53) connected to the output end of the material blocking cylinder (52). A material blocking strip (54) is fixed to one end of the back plate (53) near the counting support platform (41). The bag feeding mechanism (6) includes a bag feeding support platform (61), a second sensor (62) fixed on the bag feeding support platform (61), and a bag feeding cylinder (63). The bag feeding cylinder (63) is located on one side of the second sensor (62), and a second lifting cylinder (64) is fixed to the bottom of the bag feeding cylinder (63). The output end of the second lifting cylinder (64) is connected to the bag feeding plate (65).

2. The automatic counting machine for raw fried dough sticks according to claim 1, characterized in that: The feeding mechanism (1) includes a feeding bracket (11), a feeding motor (12) disposed on one side of the feeding bracket (11), and a feeding conveyor belt (14) mounted on the feeding bracket (11). The output end of the feeding motor (12) is connected to a first reducer (13). The first reducer (13) is fixed on the feeding bracket (11), and the end of the first reducer (13) away from the feeding motor (12) is connected to the feeding conveyor belt (14). Both sides of the upper surface of the feeding conveyor belt (14) are provided with first baffles (15). The two first baffles (15) are respectively fixed on two sets of first supports (16), and the two sets of first supports (16) are fixed on the feeding bracket (11).

3. The automatic counting machine for raw fried dough sticks according to claim 1, characterized in that: The material handling mechanism (2) includes a material handling bracket (21), a material handling motor (22) disposed on one side of the material handling bracket (21), and a material handling conveyor belt (24) installed on the material handling bracket (21). The output end of the material handling motor (22) is connected to a second reducer (23). The second reducer (23) is fixed on the material handling bracket (21), and the end of the second reducer (23) away from the material handling motor (22) is connected to the material handling conveyor belt (24). The upper surface of the material handling conveyor belt (24) is provided with two second baffles (25). The two second baffles (25) are respectively fixed on two sets of second supports (26). The two sets of second supports (26) and the point support platform (41) are all fixed on the material handling bracket (21).

4. The automatic counting machine for raw fried dough sticks according to claim 1, characterized in that: The material conveying mechanism (3) includes a material conveying bracket (31), a material conveying motor (32) fixed on the material conveying bracket (31), and a material conveying belt (35) running on the material conveying bracket (31). The output end of the material conveying motor (32) is provided with a transmission structure, which includes two sprockets (33) and a chain (34) running on the two sprockets (33). One sprocket (33) is fixedly connected to the output end of the material conveying motor (32), and the other sprocket (33) is connected to the material conveying belt (35).

5. The automatic counting machine for raw fried dough sticks according to claim 4, characterized in that: The material conveying bracket (31) is also fixed with a cover plate (36), which is sleeved on the outside of the chain (34) and the two sprockets (33).

6. The automatic counting machine for raw fried dough sticks according to claim 1, characterized in that: There are two first sensors (42), and the two first sensors (42) are symmetrically distributed on the point support platform (41).

7. The automatic counting machine for raw fried dough sticks according to claim 1, characterized in that: The material conveying mechanism (3) is provided with a bagging mechanism (7) at one end away from the material handling mechanism (2). The bagging mechanism (7) includes a rotary cylinder (71) fixed on the material conveying bracket (31) and a rotary shaft (72) connected to the output end of the rotary cylinder (71). A rotary guide plate (73) is fixed at one end of the rotary shaft (72) away from the rotary cylinder (71). A fixed guide plate (74) is provided on one side of the rotary guide plate (73).