Canning equipment for chili production

Through the coordinated work of designing conveying components and filling components, the problem of bubbles generated when filling speed is fast is solved, and the effect of efficient filling and extended shelf life is achieved.

CN120397973APending Publication Date: 2025-08-01余清
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Patent Information

Application Number
CN202510663936.0
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-22
Publication Date
2025-08-01

AI Technical Summary

Technical Problem

Existing pepper filling equipment is prone to bubbles when filling speed is fast, affecting the taste and shelf life of peppers.

Method used

A canning equipment including a conveying assembly, a placement rack, a filling cylinder and a filling assembly is designed. By driving the movement of the placement rack, the cylinder piston rod drives the placement plate to move horizontally to remove bubbles, and the filling cylinder and the filling bottle are connected through the extrusion block and the pull rod, achieving efficient filling.

Benefits of technology

Effectively removes bubbles in the filling bottle, extends the shelf life of oiled peppers, and achieves an efficient filling process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of chili filling, in particular to chili production canning equipment which comprises a rack, a conveying assembly, a placing frame, a placing plate, a filling cylinder and the like. The conveying assembly and the filling cylinder are both installed on the rack, the conveying assembly is located below the filling cylinder, the conveying assembly conveys filling bottles to the position below the filling cylinder for filling, a plurality of containing frames are evenly installed on a conveying belt in the conveying assembly at intervals, and containing plates used for containing the filling bottles are installed on the containing frames in a sliding mode. The conveying assembly drives the containing frame to move, along with movement of the conveying assembly, the end of a piston rod of the air cylinder gradually slides into a groove of the connecting block, when the containing frame moves to the position under a filling cylinder, the conveying assembly stops moving, the air cylinder drives the containing plate to horizontally move through telescopic movement of the piston rod, and therefore bubbles in a filling bottle are removed. Therefore, the shelf life of the chilies is prolonged.
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Description

Technical Field

[0001] The present invention relates to the technical field of chili filling, and particularly relates to a canning device for chili production. Background Art

[0002] Chili is an annual herbaceous plant of the genus Capsicum in the Solanaceae family. Its root system is underdeveloped and the stem is erect; the leaves are alternate, ovate, and the leaf surface is smooth; the flowers are solitary or clustered, mostly white; the fruit surface is smooth or wrinkled and shiny; the fruits are oblate, spherical, conical or linear, and the seeds are light yellow and kidney-shaped; the flowering and fruiting period is from May to November. "New Compilation of Dietary Essence" records that "because the stem of chili is like that of eggplant and the taste is extremely spicy, it is also called foreign pepper.

[0003] As a special flavor food, the main ingredient of oil chili is chili powder, and other auxiliary ingredients also include fermented soybeans, peanuts, edible oil, etc. Its general production method is to heat the oil, then put the chili powder and auxiliary ingredients into the oil and boil them, and finally bottle them. The existing bottling method is generally completed through a filling device. Before the filling device fills the oil chili into the filling bottle, the filling bottle generally needs to be cleaned and disinfected, and then the filling device fills the oil chili into the bottle and finally seals it. Since the oil chili is a solid-liquid mixture, when it is filled into the filling bottle by the filling device, if the filling speed is slightly faster, bubbles may be generated in the filling bottle, and the bubbles in the filling bottle will affect the taste and shelf life of the chili.

[0004] Based on this, it is necessary to design a canning device for chili production that can achieve efficient filling and avoid generating bubbles during filling. Summary of the Invention

[0005] Technical Solution: The present invention provides such a canning device for chili production, which includes a frame, a conveying component, a placement rack, a placement plate, a filling cylinder, a driving component, a resetting component and a filling component. The conveying component and the filling cylinder are both installed on the frame. The conveying component includes a conveyor belt, a driving motor and a rotating shaft. The conveying component is located below the filling cylinder. The conveying component conveys the filling bottle to the lower part of the filling cylinder for filling. A number of the placement racks are evenly spaced and installed on the conveyor belt in the conveying component. The placement plate for placing the filling bottle is slidably installed on the placement rack. The placement plate is spaced with placement grooves for placing the filling bottle. The driving component installed on the frame drives the placement plate to slide horizontally along the placement rack. The resetting component arranged on the placement rack enables the placement plate to reset automatically after losing the driving force of the driving component. The filling component on the filling cylinder fills the chili in the filling cylinder into the filling bottle efficiently.

[0006] Preferably, the reset component includes a bump, an L-shaped rod, and a first spring. The bumps are provided at the four corners of the top of the placement rack. The L-shaped rod is slidably connected to the bump. One end of the L-shaped rod away from the bump is installed on the placement plate, and the first spring is wound around the L-shaped rod.

[0007] Preferably, the driving component includes a cylinder and a connecting block. The cylinder is installed on the side wall of the filling cylinder where the rack is installed. The cylinder is arranged directly below the filling cylinder. The connecting block is installed on the side of the sliding plate facing the cylinder. The end of the piston rod of the cylinder can be slidably matched with the T-shaped groove opened on the connecting block.

[0008] Preferably, the filling component includes an extrusion block, a 7-shaped plate, a baffle, a fourth spring, and a pulling rod. The baffle that can block the feeding port of the filling cylinder is slidably installed at the bottom of the filling cylinder through the 7-shaped plate. The fourth spring is arranged between the baffle and the 7-shaped plate. One pulling rod is arranged at the bottom of the baffle, and the pulling rod can be extrusion-fitted with the extrusion block arranged on the placement rack.

[0009] Preferably, it further includes a placement frame, a sliding frame, a square-shaped frame, a sliding rod, a cross plate, a trapezoidal block, a clamping block, and a second spring. The placement frame is installed on the rack. The placement frame is arranged above the side of the conveying component for feeding. The sliding frame is slidably arranged at the top of the placement frame. A plurality of square-shaped frames are installed on the sliding frame. The sliding rod is slidably installed on the square-shaped frame. The upper end of the sliding rod is connected to the cross plate arranged above the sliding frame. The sliding rod passes through the upper cross bar of the square-shaped frame and the end extending into the inner side of the square-shaped frame is connected with the trapezoidal block. The second spring is arranged between the top of the trapezoidal block and the upper cross bar of the square-shaped frame. Two symmetrical clamping blocks are slidably installed on the lower cross bar of the square-shaped frame. An arc-shaped block for clamping the filling bottle is arranged at the lower part of the clamping block.

[0010] Preferably, the waist of the trapezoidal block is slidably matched with the inclined surface side of the upper part of the clamping block.

[0011] Preferably, it further includes an n-shaped frame one. The n-shaped frame one for limiting the sliding frame is arranged at the top of the two symmetrical sides of the placement frame. The vertical rod part of the n-shaped frame one close to the sliding frame is slidably matched with the through hole opened on the sliding frame.

[0012] Preferably, it further includes a limiting block. The limiting block for preventing the sliding frame from sliding out of the placement frame is arranged at the top of the side of the placement frame close to the filling cylinder.

[0013] Preferably, it further includes an n-shaped frame II and a spring III. The n-shaped frame II is slidably installed on opposite side walls of the placement frame, and the spring III is arranged between the n-shaped frame II and the placement frame.

[0014] Preferably, a through hole adapted to the filling port of the filling cylinder is formed in the baffle. When the extrusion block presses the pull rod, the pull rod drives the through hole on the baffle to communicate with the filling port on the filling cylinder.

[0015] The beneficial effects of the present invention are as follows: 1. The conveying component drives the placement rack to move. As the conveying component moves, the end of the piston rod of the cylinder gradually slides into the groove of the connecting block. When the placement rack moves directly below the filling cylinder, the conveying component stops moving, and the cylinder drives the placement plate to move horizontally through the telescopic movement of the piston rod, thereby removing the air bubbles in the filling bottle and prolonging the shelf life of the oil chili peppers.

[0016] 2. At the same time, when the conveying component moves, the extrusion block moves towards the pull rod. When the extrusion block contacts the pull rod and exerts a pressing force on it, the pull rod drives the baffle to move forward under the pressing action of the extrusion block, so that the through hole on the baffle communicates with the filling port of the filling cylinder, and the oil chili peppers in the filling cylinder are poured into the filling bottle, thereby achieving the effect of efficient filling. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 is a three-dimensional structural schematic diagram of the present invention.

[0018] Figure 2 is a three-dimensional structural schematic diagram of the frame, conveying component, placement rack and filling cylinder of the present invention.

[0019] Figure 3 is a three-dimensional structural schematic diagram of the reset component for positioning the placement plate and the placement rack and the pushing component for pushing the placement plate to slide along the placement rack of the present invention.

[0020] Figure 4 is a three-dimensional structural schematic diagram of the reset component of the present invention.

[0021] Figure 5 is a three-dimensional structural schematic diagram of components such as the placement frame, sliding frame and limit block of the present invention.

[0022] Figure 6 is a three-dimensional structural schematic diagram of the sliding frame after sliding on the placement frame of the present invention.

[0023] Figure 7 is an assembly structural schematic diagram of components such as the sliding frame, square frame, trapezoidal block and clamping block of the present invention.

[0024] Figure 8 is a three-dimensional structural schematic diagram of components such as the extrusion block and the pull rod of the present invention.

[0025] Figure 9 This is a three-dimensional structural schematic diagram of the 7-shaped plate, baffle, spring four and pull rod of the present invention.

[0026] The reference numerals in the drawings are: 1-frame, 2-conveying assembly, 3-placement rack, 4-placement plate, 5-filling cylinder, 6-resetting assembly, 61-protrusion, 62-L rod, 63-first spring, 7-cylinder, 71-connecting block, 8-placement frame, 9-sliding rack, 91-square frame, 92-sliding rod, 93-horizontal plate, 94-trapezoidal block, 95-clamping block, 96-second spring, 10-first n-shaped frame, 11-limit block, 12-second n-shaped frame, 13-third spring, 14-extrusion block, 15-7-shaped plate, 16-baffle, 17-fourth spring, 18-pull rod. Detailed implementation manners

[0027] The present invention will be further described below with reference to the drawings and embodiments.

[0028] Embodiment: A canning device for chili production, as Figure 1 and Figure 2 shown, includes a frame 1, a conveying assembly 2, a placement rack 3, a placement plate 4, a filling cylinder 5, a driving assembly, a resetting assembly 6 and a filling assembly. The conveying assembly 2 and the filling cylinder 5 are both installed on the frame 1. The frame 1 is composed of two symmetric "I"-shapes. The conveying assembly 2 includes a rotating shaft rotatably installed at the left and right ends of the frame 1, a conveyor belt between the two rotating shafts, and a driving motor for driving the rotation of the rotating shaft to realize the conveying function of the conveyor belt for the filling bottles. The conveying assembly 2 is located below the filling cylinder 5. The conveyor belt in the conveying assembly 2 conveys the filling bottles to the lower part of the filling cylinder 5 for filling under the driving of the driving motor. Three filling ports are spacedly arranged at the bottom of the filling cylinder 5. A plurality of placement racks 3 are evenly spacedly installed on the conveyor belt in the conveying assembly 2. A placement plate 4 for placing the filling bottles is slidably installed on the placement rack 3. Circular placement grooves for placing the filling bottles are spacedly formed on the placement plate 4. According to design or use requirements, the placement groove can also be of other shapes. The driving assembly installed on the frame 1 drives the placement plate 4 to slide horizontally along the placement rack 3, thereby shaking the filling bottles on the placement plate 4 and removing the air bubbles in the filling bottles. The resetting assembly 6 arranged on the placement rack 3 enables the placement plate 4 to automatically reset after losing the driving force of the driving assembly. Through the resetting assembly, the placement plate 4 is always kept at the central position on the placement rack 3, so that the filling bottles are directly below the filling ports of the filling cylinder 5. The filling assembly on the filling cylinder 5 efficiently fills the oil chili in the filling cylinder 5 into the filling bottles.

[0029] As Figure 3 and Figure 4As shown, the reset component 6 includes a bump 61, an L-shaped rod 62, and a first spring 63. Bumps 61 are provided at the four corners of the top of the placement rack 3. The L-shaped rod 62 is slidably connected to the bump 61. The L-shaped rod 62 slidably penetrates through the bump 61. One end of the L-shaped rod 62 away from the bump 61 is installed on the placement plate 4. The first spring 63 is wound around the L-shaped rod 62. The two ends of the first spring 63 are respectively connected to the bump 61 and the L-shaped rod 62. The first spring 63 is a compression spring, and its initial state is as Figure 4 shown.

[0030] As Figure 3 shown, the driving component includes a cylinder 7 and a connecting block 71. The cylinder 7 is installed on the side wall of the filling cylinder 5 installed on the frame 1. The cylinder 7 is arranged directly below the filling cylinder 5. A connecting block 71 is installed on the side of the sliding plate facing the cylinder 7. The end of the piston rod of the cylinder 7 can be slidably matched with the T-shaped groove opened on the connecting block 71. When the conveying component 2 moves, the placement rack 3 moves downward below the filling cylinder 5, and the connecting block 71 approaches the end of the piston rod of the cylinder 7. As the conveying component 2 continues to move, the T-shaped groove of the connecting block 71 slides onto the end of the piston rod of the cylinder 7, realizing the connection between the piston rod of the cylinder 7 and the connecting block 71. At this time, the conveying component 2 stops moving, and the piston rod of the cylinder 7 makes a telescopic movement to drive the placement plate 4 to reciprocate horizontally along the placement rack 3.

[0031] As Figure 8 and Figure 9 shown, the filling component includes a pressing block 14, a 7-shaped plate 15, a baffle 16, a fourth spring 17, and a pulling rod 18. The bottom of the filling cylinder 5 is slidably installed with a baffle 16 that can block the discharge port of the filling cylinder 5 through the 7-shaped plate 15. A fourth spring 17 is arranged between the baffle 16 and the 7-shaped plate 15. The initial state of the fourth spring 17 is as Figure 9 shown. A pulling rod 18 is provided at the bottom of the baffle 16. The pulling rod 18 can be in pressing cooperation with the pressing block 14 arranged on the placement rack 3. The pressing block 14 presses the pulling rod 18, and the pulling rod 18 drives the baffle 16 away from the discharge port of the filling cylinder 5. The through hole on the baffle 16 is communicated with the filling port at the bottom of the filling cylinder 5, and the oil chili peppers in the filling cylinder 5 are filled into the filling bottle through the filling port of the filling cylinder 5 and the through hole of the baffle 5.

[0032] As Figure 5 , Figure 6 and Figure 7As shown, it further includes a placement frame 8, a sliding carriage 9, a square-shaped frame 91, sliding rods 92, a cross plate 93, a trapezoidal block 94, clamping blocks 95, and a second spring 96. A placement frame 8 is installed on the right side of the frame 1. The right side of the placement frame 8 is open. A placement groove for placing the filling bottles is provided on the placement frame 8. A rectangular groove for the filling bottles to pass through is opened on the left side of the placement frame 8. A sliding carriage 9 is slidably arranged on the top of the placement frame 8. Three square-shaped frames 91 are installed on the sliding carriage 9. Sliding rods 92 are slidably installed on the square-shaped frames 91. The upper ends of the sliding rods 92 are connected to a cross plate 93 located above the sliding carriage 9. The sliding rods 92 pass through the upper cross bars of the square-shaped frames 91 and the ends extending into the inner sides of the square-shaped frames 91 are connected to trapezoidal blocks 94. The trapezoidal blocks 94 are isosceles trapezoids. A second spring 96 is provided between the top of the trapezoidal block 94 and the upper cross bar of the square-shaped frame 91. The initial state of the second spring 96 is as Figure 6 shown, Figure 7 the second spring 96 is in a compressed deformation state. Two symmetric clamping blocks 95 are slidably installed on the lower cross bar of the square-shaped frame 91. The upper parts of the clamping blocks 95 are right trapezoids. The waists of the trapezoidal blocks 94 are slidably matched with the inclined sides of the upper parts of the clamping blocks 95. An arc-shaped block for clamping the filling bottles is provided at the lower part of the clamping blocks 95.

[0033] As Figure 5 and Figure 6 shown, it further includes an n-shaped frame one 10. N-shaped frames one 10 for limiting the sliding carriage 9 are provided at the tops of the symmetric two sides of the placement frame 8. The vertical rod parts of the n-shaped frames one 10 close to the sliding carriage 9 are slidably matched with the through holes opened on the sliding carriage 9. The setting of the n-shaped frames one 10 can realize the function of lifting the sliding carriage 9 to different heights to clamp filling bottles at different heights.

[0034] As Figure 5 and [[ID=1V]] Figure 6 shown, it further includes a limiting block 11. A limiting block 11 for preventing the sliding carriage 9 from sliding out of the placement frame 8 is provided at the top of the placement frame 8 close to the filling cylinder 5.

[0035] As Figure 6 shown, it further includes an n-shaped frame two 12 and a third spring 13. Two rectangular grooves are opened on the front and back symmetric side walls of the placement frame 8. An n-shaped frame two 12 is slidably installed in the rectangular grooves. A third spring 13 is provided between the n-shaped frame two 12 and the bottom of the rectangular grooves of the placement frame 8. The setting of the third spring 13 can play a buffering role in the process of the sliding carriage 9 placing the filling bottles downward, so as to provide protection for the filling bottles.

[0036] When filling chili oil with this filling device, first place the filling bottles evenly in the placement grooves at the inner bottom of the placement frame 8. Lift the sliding frame 9 upward according to the height of the filling bottles. The sliding frame 9 drives the square frame 91, the clamping blocks 95, the cross plate 93, and the trapezoidal block 94 to move upward synchronously. The n-shaped frame 1 provides guidance for the lifting of the sliding frame 9 and at the same time lifts the cross plate 93 upward. The cross plate 93 drives the trapezoidal block 94 to move upward through the sliding rod 92. The upward movement of the trapezoidal block 94 relieves the extrusion on the clamping block 95, and the second spring 96 is compressed and deformed. Subsequently, move the filling bottle to directly below the clamping block 95, and relieve the upward lifting force applied to the sliding frame 9 and the cross plate 93. The sliding frame 9 moves downward, and the clamping block 95 enters the filling bottle. Under the action of the second spring 96, the trapezoidal block 94 moves downward to contact the inclined surface of the clamping block 95 and squeeze the inclined surface of the clamping block 95. The two clamping blocks 95 are pressed to move in opposite directions, so that the arc-shaped blocks at the lower part of the clamping block 95 closely adhere to the inner wall of the filling bottle, realizing the function of clamping the filling bottle; Subsequently, move the sliding frame 9 to the left. The sliding frame 9 drives the square frame 91, the clamping block 95, the cross plate 93, the trapezoidal block 94, and the filling bottle to move leftward synchronously. When the filling bottle moves directly above the placement plate 4, press the sliding frame 9 and the cross plate downward, thereby placing the filling bottle on the placement groove on the placement plate 4. Subsequently, lift the cross plate 93 upward. The cross plate 93 drives the trapezoidal block 94 to move upward, relieving the limiting function on the clamping block 95. The clamping block 95 no longer closely adheres to the inner wall of the filling bottle. When lifting the sliding frame 9 upward, the clamping block 95 moves away from the filling bottle, realizing the function of placing a row of filling bottles on the placement plate 4; With the conveying action of the conveying component 2, the filling bottles are conveyed below the filling cylinder 5. When the extrusion block 14 contacts the pulling rod 18, as the conveying component 2 drives the placement frame 3 to continue moving leftward, the extrusion block 14 squeezes the pulling rod 18. After being squeezed, the pulling rod 18 drives the baffle 16 to move forward, so that the through hole on the baffle 16 communicates with the filling port of the filling cylinder 5, and the chili oil in the filling cylinder 5 is poured into the filling bottle. At the same time, the end of the piston rod of the cylinder 7 is slidably connected to the connecting block 71. Through the telescopic function of the piston rod of the cylinder 7, the placement plate 4 is driven to slide horizontally on the placement frame 3, thereby removing the air bubbles in the filling bottle and preventing the air bubbles in the filling bottle from affecting the shelf life of the chili oil in the filling bottle.

[0037] The above embodiments only represent the preferred embodiments of the present invention, and their descriptions are relatively specific and detailed, but they should not be construed as limiting the scope of the patent of the present invention. It should be noted that for those of ordinary skill in the art, without departing from the concept of the present invention, several deformations, improvements, and substitutions can be made, and these all belong to the protection scope of the present invention. Therefore, the protection scope of the patent of the present invention should be subject to the appended claims.

Claims

1. A canning device for pepper production, comprising a machine frame (1) and a conveying component (2), characterized in that, It further includes a placement rack (3), a placement plate (4), a filling cylinder (5), a driving assembly, a reset assembly (6) and a filling assembly. The conveying assembly (2) and the filling cylinder (5) are both installed on the frame (1). The conveying assembly (2) includes a conveyor belt, a driving motor and a rotating shaft. The conveying assembly (2) is located below the filling cylinder (5). The conveying assembly (2) conveys the filling bottles to below the filling cylinder (5) for filling. A plurality of the placement racks (3) are evenly spaced and installed on the conveyor belt in the conveying assembly (2). A placement plate (4) for placing the filling bottles is slidably installed on the placement rack (3). Placement grooves for placing the filling bottles are spacedly formed on the placement plate (4). The driving assembly installed on the frame (1) drives the placement plate (4) to slide horizontally along the placement rack (3). The reset assembly (6) provided on the placement rack (3) enables the placement plate (4) to automatically reset after losing the driving force of the driving assembly. The filling assembly on the filling cylinder (5) efficiently fills the chili in the filling cylinder (5) into the filling bottles.

2. The canned equipment for chili production according to claim 1, characterized in that, The reset assembly (6) includes a bump (61), an L-shaped rod (62) and a first spring (63). Bumps (61) are provided at the four corners of the top of the placement rack (3). The L-shaped rod (62) is slidably connected to the bump (61). One end of the L-shaped rod (62) away from the bump (61) is installed on the placement plate (4). The first spring (63) is wound around the L-shaped rod (62).

3. The canned equipment for pepper production according to claim 1, characterized in that, The driving assembly includes a cylinder (7) and a connecting block (71). The cylinder (7) is installed on the side wall of the frame (1) where the filling cylinder (5) is installed. The cylinder (7) is provided directly below the filling cylinder (5). The connecting block (71) is installed on the side of the sliding plate facing the cylinder (7). The end of the piston rod of the cylinder (7) can be slidably matched with the T-shaped groove formed on the connecting block (71).

4. A canning device for chili production according to claim 1, characterized in that, The filling assembly includes an extrusion block (14), a 7-shaped plate (15), a baffle (16), a fourth spring (17) and a pulling rod (18). The baffle (16) that can block the discharge port of the filling cylinder (5) is slidably installed at the bottom of the filling cylinder (5) through the 7-shaped plate (15). The fourth spring (17) is provided between the baffle (16) and the 7-shaped plate (15). A pulling rod (18) is provided at the bottom of the baffle (16). The pulling rod (18) can be extrusion-matched with the extrusion block (14) provided on the placement rack (3).

5. A canning device for pepper production according to claim 1, characterized in that, It further includes a placement frame (8), a sliding carriage (9), a square frame (91), a sliding rod (92), a horizontal plate (93), a trapezoidal block (94), a clamping block (95) and a second spring (96). The placement frame (8) is installed on the frame (1). The placement frame (8) is located above the side of the conveying assembly (2) for feeding. The sliding carriage (9) is slidably arranged on the top of the placement frame (8). A plurality of the square frames (91) are installed on the sliding carriage (9). The sliding rod (92) is slidably installed on the square frame (91). The upper end of the sliding rod (92) is connected to the horizontal plate (93) located above the sliding carriage (9). The sliding rod (92) passes through the upper cross bar of the square frame (91) and the end extending into the inner side of the square frame (91) is connected to the trapezoidal block (94). The second spring (96) is arranged between the top of the trapezoidal block (94) and the upper cross bar of the square frame (91). Two symmetric clamping blocks (95) are slidably installed on the lower cross bar of the square frame (91). An arc block for clamping the filling bottle is arranged at the lower part of the clamping block (95).

6. The canned equipment for pepper production according to claim 5, characterized in that, The waist of the trapezoidal block (94) is slidably matched with the inclined surface side of the upper part of the clamping block (95).

7. A canning device for pepper production according to claim 5, characterized in that, It further includes a first n-shaped frame (10). The first n-shaped frame (10) for limiting the sliding carriage (9) is arranged at the top of the symmetric two sides of the placement frame (8). The vertical rod part of the first n-shaped frame (10) close to the sliding carriage (9) is slidably matched with the through hole opened on the sliding carriage (9).

8. A canning device for pepper production according to claim 5, characterized in that, It further includes a limiting block (11). The limiting block (11) for preventing the sliding carriage (9) from sliding out of the placement frame (8) is arranged at the top of the placement frame (8) close to the filling cylinder (5).

9. The canned equipment for chili production according to claim 5, characterized in that, It further includes a second n-shaped frame (12) and a third spring (13). The second n-shaped frames (12) are slidably installed on the opposite two side walls of the placement frame (8). The third spring (13) is arranged between the second n-shaped frame (12) and the placement frame (8).

10. The canned equipment for pepper production according to claim 4, characterized in that, A through hole adapted to the filling port of the filling cylinder (5) is opened on the baffle plate (16). When the extrusion block (14) extrudes the pull rod (18), the pull rod (18) drives the through hole on the baffle plate (16) to communicate with the filling port on the filling cylinder (5).