Automatic coiling equipment for super-long spicy strips

By designing an automated rolling device, the problems of high cost and unstable quality of manual rolling in the production of spicy strips have been solved, realizing the automated spiral rolling of spicy strips and improving production efficiency and market expansion capabilities.

CN117208342BActive Publication Date: 2026-02-17HUNAN SPICY PRINCE FOOD CO LTD
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Patent Information

Application Number
CN202311166043.2
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-09-11
Publication Date
2026-02-17
Estimated Expiration
2043-09-11

AI Technical Summary

Technical Problem

The current production process of spicy strips relies on manual operation for the rolling process, resulting in high labor costs and unstable product quality. Furthermore, the traditional straight-shaped packaging limits market expansion.

Method used

Design an automatic rolling device for extra-long spicy strips, including components such as a rolling cylinder, pressure plate, lifting ring, feeder, cutter and conveyor belt, to realize the automatic spiral rolling and bagging of spicy strips and reduce manual intervention.

Benefits of technology

It has achieved automated spiral rolling of spicy strips, reducing labor costs, improving production efficiency and product quality, adapting to the rolling of spicy strips of different lengths and diameters, and reducing secondary pollution.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses an automatic coiling equipment for super-long spicy strips, which comprises a coiling cylinder arranged on a table top, a blanking hole arranged at the bottom of the coiling cylinder, an openable blanking plate arranged on the blanking hole, a receiving cavity arranged below the blanking hole, a conveying belt arranged at the bottom surface of the receiving cavity, a pressure disc arranged in the coiling cylinder and capable of ascending and descending, a lifting ring arranged outside the coiling cylinder and capable of ascending and descending with the pressure disc, a feeder arranged on the lifting ring, a feeding groove arranged on the feeder and communicated with a feeding hole arranged on the coiling cylinder, a coiling shaft arranged at the center of the coiling cylinder, a coiling groove arranged at the lower end of the coiling shaft, a coiling motor connected to the upper end of the coiling shaft, a feeding cylinder arranged at the side of the table top, a packaging disc stacked in the feeding cylinder, a pushing cavity arranged below the feeding cylinder, the pushing cavity communicated with the receiving cavity, and a pusher arranged in the pushing cavity and used for pushing the packaging disc into the receiving cavity. The equipment can realize automatic spiral coiling processing of the super-long spicy strips, and has important roles in improving the processing automation of the spicy strips, reducing labor and lowering cost.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of spicy strip food, in particular to an automatic winding equipment for super-long spicy strips. BACKGROUND

[0002] Spicy strips originated in Pingjiang, Hunan, and are commonly known as spicy, gluten, etc. They are a kind of snack food made of wheat flour as the main raw material, supplemented by other cereals, beans, and various seasonings such as oil, salt, sugar, chili, and spices. Due to its unique flavor, good chewing strength and taste, it is deeply loved by many consumers.

[0003] The existing spicy strip cooked food on the market is basically packaged in straight strip shape, which gradually solidifies the shape of spicy strip food in the minds of the public, and consumers gradually lack the ability to identify spicy strip food. At the same time, such short and straight spicy strip packaging also limits the length of the spicy strip packaged in a unit volume, which is not conducive to the market expansion of spicy strip food. In order to improve the market expansion of spicy strips and promote product development, long strip spicy strips have emerged. For long strip spicy strips, the production and processing procedures include dough mixing, dough sheet conveying, extrusion curing, cooling, cutting, knotting, mixing, transfer, weighing, knotting, winding, bagging, sealing, and boxing. Among them, winding requires the most number of people, accounting for about 50% of the total processing number. Winding refers to winding the super-long spicy strip into a spiral shape, similar to the shape of mosquito repellent. Winding can better reduce the volume of super-long spicy strips, making it easier to package. Currently, super-long spicy strips are wound into a spiral shape by hand. Manual operation not only results in high labor costs and occupies too much labor, but also easily causes secondary pollution and affects product quality.

[0004] Therefore, how to realize the automation of the winding process while considering product quality and packaging is a problem that needs to be solved to reduce labor and increase production capacity. SUMMARY

[0005] To solve the above problems, the present application provides an automatic winding equipment for super-long spicy strips, which can realize automatic spiral winding of super-long spicy strips and plays an important role in improving spicy strip processing automation, reducing labor and reducing costs.

[0006] To achieve the above purpose, the technical scheme adopted by the present application is: an automatic winding equipment for super-long spicy strips, comprising a winding cylinder arranged on a table top, a discharging hole is arranged at the bottom of the winding cylinder, an openable discharging plate is arranged on the discharging hole, a receiving cavity is arranged below the discharging hole, and a conveying belt is arranged on the bottom surface of the receiving cavity.

[0007] The reel drum is internally provided with a pressure plate that can be lifted up and down; the reel drum is externally provided with a lifting ring that can be lifted up and down with the pressure plate; the lifting ring is provided with a feeder; the feeder is provided with a feeding groove that is in communication with a feeding hole on the reel drum; the reel drum is centrally provided with a reel shaft, and the lower end of the reel shaft is provided with a reel groove, and the upper end of the reel shaft is connected with a reel motor.

[0008] The side of the table top is provided with a feeding cylinder; the feeding cylinder is internally stacked with a packaging tray; the feeding cylinder is provided below with a pushing cavity; the pushing cavity is in communication with a receiving cavity; the pushing cavity is internally provided with a pusher for pushing the packaging tray into the receiving cavity.

[0009] Compared with the prior art, the present application has the following beneficial effects:

[0010] The present application can automatically feed the super-long spicy strips, roll the super-long spicy strips into a multi-layer spiral structure according to requirements, and then automatically batch pack the super-long spicy strips into the packaging tray. The reel force is moderate, the spicy strips are regular, not loose, not deformed, and not oily, and the spicy strips have a diameter of 8-10 mm and a length of 1-6 m. The present application can be continuously produced, greatly reduces the labor operation cost of the super-long spicy strip spiral rolling, and improves the product production efficiency and production quality.

[0011] As a further improvement of the above technical solution, the feeding groove is internally provided with a cutting knife that can be lifted up and down.

[0012] The improved technical effect is that the cutting knife automatically cuts the spicy strips to realize segmented rolling of the spicy strips.

[0013] As a further improvement of the above technical solution, the upper end of the feeder is provided with a second lifter on both sides; the second lifter is installed with a mounting rod; and the mounting rod is installed with a cutting knife.

[0014] The improved technical effect is that the second lifter controls the up-and-down movement of the cutting knife to cut the spicy strips; the second lifter can be an oil cylinder, an air cylinder, or an electric push rod.

[0015] As a further improvement of the above technical solution, at least one set of feeding wheels that can rotate up and down is provided in the feeding groove; and the gap between the feeding wheels constitutes a feeding channel.

[0016] The improved technical effect is that the feeding wheels can automatically feed the spicy strips into the reel drum without manual operation.

[0017] As a further improvement of the above technical solution, the upper end of the pressure plate is connected with a mounting plate through a first connecting rod; the lifting ring is connected with the mounting plate through a second connecting rod; the upper end of the mounting plate is connected with a first lifter; and the first lifter is installed on a rack.

[0018] The improved technical effects are that the first lifting device can drive the pressing disc and the lifting ring to move up and down simultaneously. The up and down movement of the pressing disc can make the spicy strips be rolled into multiple layers according to the requirement. The up and down movement of the lifting ring can automatically adjust the feeding position of the spicy strips when entering the rolling cylinder according to the number of layers to be rolled.

[0019] As a further improvement of the above technical solution, the feeding hole is a U-shaped groove, a feeding plate slidably openable is installed in the U-shaped groove, the feeding plate is shaped to match the U-shaped groove, the tail end of the feeding plate is connected with a feeding telescopic device, and the feeding telescopic device is installed on the table top.

[0020] The improved technical effects are that the sliding of the feeding plate is controlled by the feeding telescopic device, so that the feeding hole is opened and closed. During the rolling process, the feeding hole is closed. After the rolling is completed, the feeding hole is opened, so that the rolled spicy strips fall into the packaging disc.

[0021] As a further improvement of the above technical solution, a baffle for positioning the packaging disc is arranged in the feeding cavity.

[0022] The improved technical effects are that the baffle is arc-shaped to match the packaging disc, so that the packaging disc is in a positioned state after being attached to the baffle.

[0023] As a further improvement of the above technical solution, the tail end of the pushing device is connected with a pushing telescopic device, and the front end of the pushing device is arc-shaped to match the side wall of the packaging disc.

[0024] The improved technical effects are that the pushing telescopic device drives the pushing device to move, so that the packaging disc in the feeding cylinder is pushed into the feeding cavity.

[0025] As a further improvement of the above technical solution, the conveying direction of the conveying belt is perpendicular to the pushing direction of the pushing device.

[0026] The improved technical effects are that the baffle positions the packaging disc without affecting the conveying belt to convey the packaging disc away.

[0027] As a further improvement of the above technical solution, a feeding cylinder is installed below the feeding hole.

[0028] The improved technical effects are that the accuracy of the rolled spicy strips falling into the packaging disc is improved, and the rolled spicy strips are prevented from being loose. BRIEF DESCRIPTION OF DRAWINGS

[0029] Figure 1 It is a side sectional view of the present application.

[0030] Figure 2 It is an end sectional view of the present application.

[0031] Figure 3 The schematic diagram of the top structure after the installation of the lifting ring.

[0032] Figure 4 The schematic diagram of the opening structure of the blanking plate.

[0033] Figure 5 The schematic diagram of the 3D structure of the lifting ring.

[0034] Figure 6 The schematic diagram of the bottom structure of the lifting ring.

[0035] Figure 7 The schematic diagram of the feeder structure.

[0036] Figure 8 The schematic diagram of the material winding shaft structure.

[0037] Figure 9 The schematic diagram of the formed after the winding of the super-long spicy strip.

[0038] In the figure: 1, frame; 2, material pushing extender; 3, material pushing device; 4, packaging disc; 5, feeding cylinder; 6, pressing disc; 7, winding cylinder; 8, winding motor; 9, winding shaft; 91, winding groove; 10, first lifting device; 11, mounting plate; 12, first connecting rod; 13, second connecting rod; 14, feeder; 15, lifting ring; 16, table top; 17, blanking cylinder; 18, baffle; 19, conveying belt; 20, blanking plate; 21, blanking extender; 22, mounting rod; 23, cutting knife; 24, second lifting device; 25, feeding wheel; 26, gear set; 27, feeding motor; 28, material pushing cavity; 29, material receiving cavity; 30, blanking hole; 71, feeding hole; 141, feeding groove. DETAILED DESCRIPTION

[0039] In order for those skilled in the art to better understand the technical solutions of the present application, the present application will be described in detail below in conjunction with the drawings. The description in this part is only exemplary and explanatory, and should not have any limiting effect on the protection scope of the present application.

[0040] Example one:

[0041] Please refer to Figures 1 to 9 An automatic material winding equipment for super-long spicy strips, comprising a winding cylinder 7 arranged on a table top 16, a blanking hole 30 arranged at the bottom of the winding cylinder 7, an openable blanking plate 20 arranged on the blanking hole 30, a material receiving cavity 29 arranged below the blanking hole 30, and a conveying belt 19 arranged on the bottom surface of the material receiving cavity 29.

[0042] The roll cylinder 7 is provided with a pressure plate 6 that can be raised and lowered; the roll cylinder 7 is sleeved with a lifting ring 15 that is raised and lowered with the pressure plate 6; the lifting ring 15 is provided with a feeder 14; the feeder slot 141 on the feeder 14 is in communication with the feeding hole 71 on the roll cylinder 7; the roll cylinder 7 is provided with a roll shaft 9 in the center, the lower end of the roll shaft 9 is provided with a roll groove 91, and the upper end is connected with a roll motor 8.

[0043] The side of the table top 16 is provided with a feeding cylinder 5; the feeding cylinder 5 is stacked with a packaging tray 4; the feeding cylinder 5 is provided below with a pushing cavity 28; the pushing cavity 28 is in communication with a receiving cavity 29; the pushing cavity 28 is provided with a pusher 3 for pushing the packaging tray 4 into the receiving cavity 29.

[0044] Specifically, the roll cylinder 7 can be a transparent material cylinder with both ends open; the inner diameter of the blanking hole 30 is the same as the inner diameter of the roll cylinder 7; the blanking plate 20 constitutes the bottom surface of the roll cylinder 7; the pressure plate 6 is disc-shaped, and the diameter is slightly smaller than the inner diameter of the roll cylinder 7; the lifting ring 15 is sleeved on the roll cylinder 7 and can be raised and lowered; the lifting ring 15 is integrally provided with a feeder 14 on one side; the feeder 14 is a cuboid shape, the upper end surface is slotted to form a feeder slot 141, the feeder slot 141 penetrates through the front and rear end surfaces of the feeder 14; the side wall of the roll cylinder 7 is slotted to form a feeding hole 71; the pressure plate 6 is provided with a hole in the center for the roll shaft 9 to pass through; the roll shaft 9 is coaxially arranged with the roll cylinder 7; the roll motor 8 is a servo motor.

[0045] The inner cavity of the feeding cylinder 5 is a cylindrical cavity for fitting the packaging tray 4; the front end surface of the pusher 3 is arc-shaped and just cooperates with the packaging tray 4.

[0046] Embodiment two:

[0047] As shown in Figure 3 , 7 As a preferred mode of the above embodiment, the feeder slot 141 is provided with a cutting knife 23 that can be raised and lowered. Specifically, the cutting knife 23 is located in the feeder slot 141, and the width of the cutting knife 23 is smaller than the width of the feeder slot 141.

[0048] As a preferred mode of the above embodiment, the feeder 14 is provided with a second lifter 24 on both sides of the upper end; the second lifter 24 is installed with a mounting rod 22; the mounting rod 22 is installed with a cutting knife 23.

[0049] Specifically, the second lifter 24 can be a pneumatic cylinder or an oil cylinder or an electric push rod; the upper end of the cutting knife 23 can be bolted to the mounting rod 22; the two ends of the mounting rod 22 are connected with the second lifter 24; the second lifter 24 is used to control the cutting knife 23 to move up and down in the feeder slot 141, so as to realize the cutting of the spicy strips.

[0050] As a preferred mode of the above embodiment, at least one set of feeding wheels 25 rotating oppositely in up and down directions is arranged in the feeding slot 141; the gap between the feeding wheels 25 constitutes a feeding channel.

[0051] Specifically, at least one set of feeding wheels 25 is arranged, and preferably two sets of feeding wheels 25 are arranged; the upper and lower feeding wheels 25 of the same set rotate oppositely, the spicy strips are inserted between the upper and lower feeding wheels 25, and the feeding wheels 25 are driven to rotate by a feeding motor 27; the shafts of the feeding wheels 25 of the same set are driven by engaging with a gear set 26. Friction lines can be additionally arranged on the wheel surface of the feeding wheel 25.

[0052] Embodiment three:

[0053] As shown in Figure 1 , as a preferred mode of the above embodiment, the upper end of the pressing plate 6 is connected to the mounting plate 11 through the first connecting rod 12; the lifting ring 15 is connected to the mounting plate 11 through the second connecting rod 13; the upper end of the mounting plate 11 is connected to the first lifter 10; and the first lifter 10 is mounted on the rack 1.

[0054] Specifically, the first lifter 10 can be a pneumatic cylinder, an oil cylinder or an electric push rod; the upper end surface of the pressing plate 6 is connected to the first connecting rod 12 through bolts; the upper end of the first connecting rod 12 is connected to the mounting plate 11 through bolts; the upper end surface of the lifting ring 15 is connected to the second connecting rod 13 through bolts; the second connecting rod 13 is connected to the mounting plate 11 through bolts; the mounting plate 11 is connected to the lifting shaft of the first lifter 10 through bolts; and the upper end of the first lifter 10 is mounted on the rack 1. When the first lifter 10 is lifted up and down, the pressing plate 6 and the lifting ring 15 are simultaneously moved up and down.

[0055] Embodiment four:

[0056] As shown in Figures 3-4 , as a preferred mode of the above embodiment, the blanking hole 30 is in the shape of a U-shaped groove; a blanking plate 20 that can be slidably opened is mounted in the U-shaped groove; the blanking plate 20 is in a shape matched with the U-shaped groove; the tail end of the blanking plate 20 is connected to a blanking telescopic actuator 21; and the blanking telescopic actuator 21 is mounted on the table top 16.

[0057] Specifically, the blanking telescopic actuator 21 can be a pneumatic cylinder, an oil cylinder or an electric push rod; two blanking telescopic actuators 21 are mounted, and are respectively located on the two sides of the blanking plate 20. The blanking plate 20 is driven to slide by the extension and retraction of the blanking telescopic actuator 21, so as to realize the opening and closing of the feeding hole 71.

[0058] Embodiment five:

[0059] As shown in Figure 2 , as a preferred mode of the above embodiment, a baffle 18 for positioning the packaging disc 4 is arranged in the material receiving cavity 29.

[0060] Specifically, the baffle 18 is fixed on the frame 1, and the baffle 18 is composed of a straight plate and a circular arc plate; the straight plate is used for blocking one side of the packaging disc 4, and the circular arc plate is matched with the side wall of the packaging disc 4 and used for blocking one end of the packaging disc 4.

[0061] Embodiment six:

[0062] As shown in the figure, as a preferred mode of the above embodiment, the tail end of the pusher 3 is connected with the pusher telescoper 2; and the front end of the pusher 3 is a circular arc shape matched with the side wall of the packaging disc 4. Figures 1-2

[0063] Specifically, the pusher telescoper 2 is a pneumatic cylinder or an oil cylinder or an electric push rod; the pusher telescoper 2 is installed on the frame 1 and connected with the pusher 3 at the front end; and the front end face of the pusher 3 is a circular arc groove shape matched with the side wall of the packaging disc 4, so that the pusher 3 can push the packaging disc 4 to move forward without sliding to the two sides.

[0064] Embodiment seven:

[0065] As a preferred mode of the above embodiment, the conveying direction of the conveying belt 19 is perpendicular to the pushing direction of the pusher 3.

[0066] As shown in the figure, as a preferred mode of the above embodiment, the blanking hole 30 is installed below the blanking cylinder 17. Figure 1

[0067] The specific working principle of the present application is as follows:

[0068] 1. Overall scheme

[0069] The scheme mainly includes two parts of a material winding device and a control system. Artificial feeding is adopted, photoelectric sensor sensing is adopted, a rotating motor drives the material winding shaft 9 to wind the material, and finally the material is loaded into the packaging disc 4; the independent electric control cabinet is used for control, and a PLC touch screen is built-in.

[0070] Material winding device scheme

[0071] ​​The artificial puts the spicy strip into the feeder 14 of the rolling device, the spicy strip is pulled through the rolling cylinder 7 into the space below the pressure disc 6 by the feeding wheel 25, and through the rolling groove 91 of the rolling shaft 9; the rolling motor 8 drives the rolling shaft 9 to rotate, the rolling groove 91 drives the spicy strip to rotate synchronously to be spirally rolled in the rolling cylinder 7; when a layer is rolled, the first lifter 10 drives the pressure disc 6 and the lifting ring 15 to rise by one layer, so that the second layer space is left below the pressure disc 6; at this time, the rolling motor 8 continues to drive the rolling shaft 9 to rotate, so that the spicy strip is rolled in the second layer space; when the rolling is completed, the first lifter 10 continues to drive the pressure disc 6 to rise by one layer again, so that the third layer space is left below the pressure disc 6; at this time, the rolling motor 8 continues to drive the rolling shaft 9 to rotate, so that the spicy strip is rolled in the third layer space, as shown in the schematic view of the formed spicy strip after rolling. Figure 9

[0072] When the rolling is completed, the cutting knife 23 is lowered to cut the spicy strip; then the blanking plate 20 opens the blanking hole 30, the first lifter 10 drives the pressure disc 6 to descend, the rolled spicy strip is extruded downward by the pressure disc 6 to separate from the rolling cylinder 7 and the rolling groove 91, and directly falls into the packaging disc 4 in the receiving cavity 29; then the conveying belt 19 conveys the packaging disc 4 with the spicy strip to the outside.

[0073] When the conveying belt 19 conveys the packaging disc 4 to the outside, the material pushing telescopic device 2 drives the material pushing device 3 to move forward, and pushes and slides the packaging disc 4 at the bottom end of the feeding cylinder 5 to the conveying belt 19 and is blocked by the baffle 18 to be positioned and fixed; the process is continued for the loading of the spicy strip.

[0074] The pressure disc 6 is reset to reserve a layer of space for the next rolling of the spicy strip.

[0075] 3. Control system

[0076] The device is provided with a separate electric control cabinet, the electric control cabinet is made of stainless steel, and is internally provided with a PLC touch screen, a Siemens frequency converter, an air switch, a relay, a transformer and other main electric appliances. A label with technical parameters such as device number, electrical capacity, device weight, maximum power and the like is pasted on the door of the electric control cabinet, the electric control cabinet is dustproof and sealed, the temperature in the cabinet is ≤40℃, the functions are divided in the circuit, the strong current and the weak current are divided, and the device is convenient to maintain. Three conditions of standby, normal operation and fault of the device are respectively displayed by a rotating cylindrical three-color lamp. The power supply port of the device is on the top surface of the electric control cabinet, and the air and water pipelines are at the lower end of the circuit wiring box.

[0077] The 24V low-voltage lighting is adopted in the electric control cabinet, and the lighting is controlled to open and close with the door.

[0078] The control circuit is DC 24V, the limit switch and the photoelectric switch use products with indicator lights, the abnormal stop switch adopts a red pressure rotating self-locking type tight stop switch, and the operating switches are provided with action end display lamps. ​

[0079] The wire slot adopts an aerial bridge type wiring mode, and wiring over 1 meter is fixed by a hard tube.

[0080] The main machine, accessories and all auxiliary facilities of the equipment shall take safety protection measures, have safety protection measures and devices such as accidental power failure, power failure maintenance work member correct position, and the design, manufacture and installation of the electrical control part meet the GB5226.1-2002 standard.

[0081] 4、Expected effect

[0082] The length of 1-6m chili strip can be rolled into 1-3 layers of roll material; the roll material has moderate strength, the chili strip is regular, not loose, not deformed, not oily, and the chili seeds are stably attached; after the roll material is completed, one end of the chili strip is outside the surface layer, which is convenient to take; the tray is quickly and stably loaded, and the tray material is regular and not loose.

[0083] The efficiency of the rolling machine is more than 100 rolls per hour, which saves manpower and ensures product quality, reduces secondary pollution.

[0084] It should be noted that in this text, the term "includes", "contains" or any other variant thereof is intended to cover non-exclusive inclusion, so that the process, method, article or device including a series of elements not only includes those elements, but also includes other elements not explicitly listed, or includes elements inherent to such process, method, article or device.

[0085] The principles and implementation modes of the present application are described by applying specific examples in this text, and the above example is only used to help understand the method of the present application and its core idea. The above description is only the preferred embodiment of the present application. It should be pointed out that due to the limitation of language expression, there are infinite specific structures, and for ordinary skilled persons in the technical field, without departing from the principles of the present application, some improvements, refinements or changes can be made, or the above technical features can be combined in an appropriate way; these improvements, refinements, changes or combinations, or the application of the concept and technical scheme of the present application to other occasions without improvement, shall be regarded as the protection scope of the present application.

Claims

1. An automatic rolling device for extra-long spicy strips, characterized in that, Includes a roll (7) set on the table (16), a drop hole (30) is provided at the bottom of the roll (7), an openable drop plate (20) is provided on the drop hole (30), a receiving cavity (29) is provided below the drop hole (30), and a conveyor belt (19) is provided on the bottom surface of the receiving cavity (29); The coil (7) is equipped with a pressure plate (6) that can be raised and lowered; the coil (7) is covered with a lifting ring (15) that rises and falls with the pressure plate (6); a feeder (14) is provided on the lifting ring (15); the feed groove (141) on the feeder (14) is connected to the feed hole (71) on the coil (7); a winding shaft (9) is provided at the center of the coil (7), the lower end of the winding shaft (9) is provided with a winding groove (91), and the upper end is connected to a winding motor (8); A feeding cylinder (5) is provided on the side of the table (16); a packaging tray (4) is stacked inside the feeding cylinder (5); a pushing cavity (28) is provided below the feeding cylinder (5); the pushing cavity (28) is connected to the receiving cavity (29); a pusher (3) for pushing the packaging tray (4) into the receiving cavity (29) is provided inside the pushing cavity (28).

2. The automatic rolling equipment for extra-long spicy strips according to claim 1, characterized in that, The feed trough (141) is equipped with a cutting blade (23) that can be raised and lowered.

3. The automatic rolling equipment for extra-long spicy strips according to claim 2, characterized in that, The feeder (14) is provided with a second lifter (24) on both sides of the upper end; an installation rod (22) is installed between the second lifters (24); a cutter (23) is installed on the installation rod (22).

4. The automatic rolling equipment for extra-long spicy strips according to claim 2, characterized in that, At least one set of feeding wheels (25) that rotate in opposite directions are provided in the feeding trough (141); the gap between the feeding wheels (25) forms a feeding channel.

5. The automatic rolling equipment for extra-long spicy strips according to claim 1, characterized in that, The upper end of the pressure plate (6) is connected to the mounting plate (11) via the first connecting rod (12); the lifting ring (15) is connected to the mounting plate (11) via the second connecting rod (13); the upper end of the mounting plate (11) is connected to the first lifting device (10); the first lifting device (10) is mounted on the frame (1).

6. The automatic rolling equipment for extra-long spicy strips according to claim 1, characterized in that, The material discharge hole (30) is a U-shaped groove; a slidable material discharge plate (20) is installed in the U-shaped groove; the material discharge plate (20) is shaped to match the U-shaped groove; the tail end of the material discharge plate (20) is connected to a material discharge telescopic device (21); the material discharge telescopic device (21) is installed on the table (16).

7. The automatic rolling equipment for extra-long spicy strips according to claim 1, characterized in that, The receiving cavity (29) is provided with a baffle (18) for positioning the packaging tray (4).

8. The automatic rolling equipment for extra-long spicy strips according to claim 1, characterized in that, The pusher (3) is connected to the pusher telescopic device (2) at its tail end; the front end of the pusher (3) is an arc shape that matches the side wall of the packaging tray (4).

9. The automatic rolling equipment for extra-long spicy strips according to claim 1, characterized in that, The conveying direction of the conveyor belt (19) is perpendicular to the pushing direction of the pusher (3).

10. An automatic rolling device for extra-long spicy strips according to claim 1, characterized in that, A discharge cylinder (17) is installed below the discharge hole (30).

Citation Information

Patent Citations

  • Novel full-automatic coiling machine

    CN113120651A

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    CN202061928U