Bowl falling mechanism for double-row bowl noodle machine

By designing a bowl-dropping mechanism for a double-row noodle machine, combined with a material clamping, suction cup, and material-discharging flipping mechanism, the problem of traditional equipment being unable to handle multiple sizes of paper bowls has been solved, achieving equipment simplification and efficiency improvement.

CN223851729UActive Publication Date: 2026-01-30HANGZHOU PANJI INTELLIGENT DEVICE CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202520545694.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-26
Publication Date
2026-01-30
Estimated Expiration
2035-03-26

AI Technical Summary

Technical Problem

Traditional single-row noodle machines can only handle paper bowls of a single size, making it difficult to adapt to the simultaneous processing requirements of double-row noodle machines that handle two different sizes of paper bowls. This results in complex equipment structure, large space occupation, high cost, and high control difficulty.

Method used

Design a bowl dropping mechanism for a double-row noodle machine, including first and second bowl dropping mechanisms, a material clamping mechanism, a suction cup flipping mechanism, and a material dispensing flipping mechanism. Through the coordinated operation of these mechanisms, two independent bowl dropping mechanisms are not required, and accurate material dropping and flipping positioning of two different sizes of paper bowls can be achieved.

Benefits of technology

The equipment structure has been simplified, the space occupied has been reduced, the control complexity has been lowered, the processing efficiency and flexibility have been improved, and the multi-specification paper bowls required by the double-row noodle machine have been adapted.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223851729U_ABST
    Figure CN223851729U_ABST
Patent Text Reader

Abstract

The utility model discloses a bowl falling mechanism for a double-row bowl noodle machine, which comprises a machine frame, a first bowl falling mechanism, a second bowl falling mechanism, a material clamping mechanism, a sucking disc turnover mechanism and a material discharging turnover mechanism, the bottom of the first bowl falling mechanism and the bottom of the second bowl falling mechanism are both provided with material clamping mechanisms, the suction cup turnover mechanism and the discharging turnover mechanism are both connected with the machine frame, and the first bowl falling mechanism and the second bowl falling mechanism are used for processing two different specifications of paper bowls needed by the double-row bowl noodle machine respectively. The first bowl falling mechanism and the second bowl falling mechanism are matched with the material clamping mechanism, the suction cup turnover mechanism and the discharging turnover mechanism to work and operate, two independent bowl falling mechanisms are not needed, the occupied space is relatively small, control and use are convenient, and certain use value and popularization value are achieved.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The utility model relates to food packaging machinery technical field especially relates to a bowl mechanism for double row bowl noodle machine. BACKGROUND

[0002] In the bowl noodle production line, the accurate blanking and overturning positioning of paper bowls are key processes. The bowl falling mechanism of the traditional single-row bowl noodle machine can only handle a single-specification paper bowl, has low efficiency, and is difficult to adapt to the synchronous processing needs of two different-specification paper bowls of the double-row bowl noodle machine. In the prior art, the double-row bowl noodle machine usually needs two independent bowl falling systems, resulting in a complex device structure, large space occupation, high cost, and high difficulty in synchronous control.

[0003] In view of the above, a bowl falling mechanism for a double-row bowl noodle machine is needed to solve the problems in the prior art. SUMMARY

[0004] In view of the problems in the prior art, the utility model provides a bowl falling mechanism for a double-row bowl noodle machine to solve the above problems.

[0005] To achieve the above purpose, the utility model provides the following technical scheme: a bowl falling mechanism for a double-row bowl noodle machine, comprising a rack, a first bowl falling mechanism, a second bowl falling mechanism, a material clamping mechanism, a suction cup overturning mechanism, and a material discharging overturning mechanism, the first bowl falling mechanism and the second bowl falling mechanism are both installed on the rack, the bottom of the first bowl falling mechanism and the second bowl falling mechanism is provided with the material clamping mechanism, the suction cup overturning mechanism and the material discharging overturning mechanism are both connected with the rack, the first bowl falling mechanism and the second bowl falling mechanism are used for processing two different-specification paper bowls required by the double-row bowl noodle machine respectively, the material clamping mechanism is used for making the paper bowls in the first bowl falling mechanism and the second bowl falling mechanism fall in order, the suction cup overturning mechanism is used for adsorbing one side of the paper bowl and overturning the other side to fall on the material discharging overturning mechanism, and the material discharging overturning mechanism is used for clamping and fixing two different-specification paper bowls and positioning and placing them on the double-row bowl noodle machine after overturning. The first bowl falling mechanism and the second bowl falling mechanism cooperate with the material clamping mechanism, the suction cup overturning mechanism, and the material discharging overturning mechanism to work and run, without two independent bowl falling mechanisms, the space occupation is relatively small, and the control and use are relatively convenient.

[0006] Further, the first bowl falling mechanism and the second bowl falling mechanism both comprise a plurality of cylinders, a fixed plate, a support rod, and a side strip, the cylinders are installed on the fixed plate at fixed intervals, through holes for adapting to the caliber of the cylinders are formed in the fixed plate, the support rod is installed at the bottom of the four corners of the cylinder, and the support rod is movably installed on the rack through the side strip.

[0007] A crossbeam cylinder is symmetrically installed at both ends of the fixed plate. The bottom output end of the crossbeam cylinder passes through the fixed plate and is connected to the crossbeam plate. Vertical guide rods are provided at both ends of the crossbeam plate. The vertical guide rods are movably connected to the fixed plate through linear bearings. The bottom wall of the crossbeam plate is connected to the clamping mechanism.

[0008] Furthermore, the material clamping mechanism is provided in two sets, and the two sets of material clamping mechanisms are respectively installed below the first bowl dropping mechanism and the second bowl dropping mechanism;

[0009] The clamping mechanism includes a support plate, a fixed shaft, a first upper support plate, a first lower support plate, a second upper support plate, a second lower support plate, a first clamping cylinder, and a second clamping cylinder. The support plates are symmetrically arranged at both ends of the clamping mechanism. Several fixed shafts are provided, and both ends of these fixed shafts are used to connect to the symmetrical support plates. The fixed shafts are located between two support plates and connected to the first upper support plate, the first lower support plate, the second upper support plate, and the second lower support plate via linear bearings. The first clamping cylinder includes two sets, with the piston ends of the upper and lower sets of the first clamping cylinders respectively... The second clamping cylinder is composed of two sets, which are connected to the first upper support plate and the first lower support plate. The piston ends of the upper and lower sets of the second clamping cylinder are respectively used to connect to the second upper support plate and the second lower support plate. The first upper support plate is located directly above the first lower support plate, and the second upper support plate is located directly above the second lower support plate. The first upper support plate, the first lower support plate, the second upper support plate, and the second lower support plate are symmetrically mounted on each other. The first upper support plate, the first lower support plate, the second upper support plate, and the second lower support plate are respectively symmetrically mounted with cup clamping sheet metal for controlling the paper bowl dropping.

[0010] Furthermore, the suction cup flipping mechanism includes an end plate, a rotating rod, and several suction cups. The end plate is symmetrically arranged at both ends of the rotating rod, and the several suction cups are arranged at fixed intervals on the rotating rod. A floating adjustment assembly is installed at both ends of the end plate. The floating adjustment assembly includes a slider, a guide rail, a short shaft, a connecting rod, a floating plate, a shaft seat, a floating rod, a crank, and a motor gear set. The slider is installed at both ends of the end plate, and the end plate is slidably connected to the guide rail via the slider. The short shaft is movably installed on the frame, and a connecting rod is sleeved on one end of the short shaft. A floating plate is rotatably connected to the bottom end of the connecting rod, and one end of the floating plate is connected to the shaft seat. The floating plate is also connected to the motor gear set via the floating rod.

[0011] Further, characterized in that the material placing and overturning mechanism is located directly below the suction disc overturning mechanism, and the material placing and overturning mechanism comprises a motor, a frame, a bearing seat, the motor is installed on one side of the rack, the output end of the motor is connected with the frame, the end of the frame away from the motor is connected with the rack through the bearing seat, the material placing and overturning mechanism further comprises a plurality of protrusions, clamping jaws, a rotating shaft, a connecting rod and a clamping jaw cylinder, the protrusions are equidistantly arranged on the upper and lower two outer walls of the frame, clamping jaws are arranged on the two sides of the plurality of protrusions, the clamping jaws are connected with the rotating shaft, the rotating shaft penetrates the frame up and down and is connected with the connecting rod arranged in the frame, the end of the connecting rod away from the rotating shaft is rotatably connected with a connecting shaft, the connecting rod is connected with a horizontal push-pull plate through the connecting shaft, and the output end of the clamping jaw cylinder is sleeved with the push-pull plate.

[0012] Further, the rack is provided with a sliding rail mechanism, and the sliding rail mechanism is used for switching the positions of the first bowl falling mechanism and the second bowl falling mechanism relative to the suction disc overturning mechanism.

[0013] Further, the sliding rail mechanism comprises a sliding rail, an electric telescopic rod, a push block and a sliding base, the sliding rail and the electric telescopic rod are both installed on the rack, the telescopic end of the electric telescopic rod is connected with the sliding base through the push block, the sliding base is slidably connected with the sliding rail, and the top wall of the sliding base is connected with the edge strip of the first bowl falling mechanism and the second bowl falling mechanism.

[0014] The beneficial effects of the present application are as follows:

[0015] 1. In the present application, the first bowl falling mechanism and the second bowl falling mechanism cooperate with the material clamping mechanism, the suction disc overturning mechanism and the material placing and overturning mechanism to work and run, without the need for two independent bowl falling mechanisms, the occupied space is relatively small, and the control and use are relatively convenient.

[0016] 2. In the present application, the first bowl falling mechanism and the second bowl falling mechanism are adjusted in position by the sliding rail mechanism, so that the required specification of the bowl falling mechanism can be conveniently and specifically placed on the suction disc overturning mechanism, the structure is simple and reasonable, and the practicality is relatively strong.

[0017] 3. In the present application, the suction disc overturning mechanism and the material placing and overturning mechanism are provided to perform two overturning actions, so that the bottom side of the paper bowl can be effectively placed on the conveying mechanism of the bowl surface machine, and the use value and popularization value are certain. BRIEF DESCRIPTION OF DRAWINGS

[0018] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0019] Figure 1 This is a three-dimensional structural schematic diagram of the present invention.

[0020] Figure 2 This is a three-dimensional structural diagram of the bowl-dropping mechanism and the material-clamping mechanism of this utility model.

[0021] Figure 3 This is a three-dimensional structural diagram of the material clamping mechanism of this utility model.

[0022] Figure 4 for Figure 3 Schematic diagram of the structure of section A.

[0023] Figure 5 This is a schematic front view of the material clamping mechanism of this utility model.

[0024] Figure 6 This is a three-dimensional schematic diagram of the suction cup flipping mechanism and the mounting structure of the frame of this utility model.

[0025] Figure 7 This is a three-dimensional structural diagram of the feeding and turning mechanism of this utility model.

[0026] Figure 8 for Figure 7 Schematic diagram of section B in the middle.

[0027] Figure 9 for Figure 7 Schematic diagram of the C-section structure.

[0028] Figure 10 This is a schematic diagram of the installation structure of the slide rail mechanism and frame of this utility model.

[0029] In the figure: 10-rack, 11-; 20a-first bowl falling mechanism, 20b-second bowl falling mechanism, 21-cylinder, 22-fixed plate, 221-cross beam cylinder, 222-cross beam plate, 223-vertical guide rod, 23-supporting rod, 24-edge strip; 30-material clamping mechanism, 31-supporting plate, 32-fixed shaft, 33-first upper supporting plate, 34-first lower supporting plate, 35-second upper supporting plate, 36-second lower supporting plate, 37-first material clamping cylinder, 38-second material clamping cylinder, 39-cup clamping sheet metal, 39a-upper sheet metal, 39b-lower sheet metal; 40-suction cup overturning mechanism, 41-end plate, 42-rotating rod, 43-suction cup, 44-floating adjusting assembly, 441-sliding block, 442-guide rail, 443-short shaft, 444-linking rod, 445-floating plate, 446-axle seat, 447-floating rod, 448-crank, 449-motor gear set; 50-putting material overturning mechanism, 51-motor, 52-frame, 53-bearing seat, 54-bump, 55-clamping jaw, 56-rotating shaft, 57-linkage, 571-linking shaft, 572-pushing and pulling plate, 58-clamping jaw cylinder; 60-sliding rail mechanism, 61-sliding rail, 62-electric telescopic rod, 63-pushing block, 64-sliding base. DETAILED DESCRIPTION

[0030] In order to facilitate the understanding of the present application, the present application will be described in more detail below in conjunction with the drawings and specific embodiments. It should be noted that when an element is described as "fixed to" another element, it can be directly on the other element or one or more intervening elements can be present therebetween. When an element is described as "connected to" another element, it can be directly connected to the other element or one or more intervening elements can be present therebetween. The terms "vertical", "horizontal", "left", "right" and similar expressions used in the specification are for illustrative purposes only.

[0031] Unless otherwise defined, all technical and scientific terms used in the specification are the same as those commonly understood by one of ordinary skill in the art to which the present application belongs. The terms used in the specification of the present application are only for the purpose of describing the specific embodiments and are not intended to limit the present application. The term "and / or" used in the specification includes any and all combinations of one or more related listed items.

[0032] As Figure 1 , 2, 3, 4, 5, 6, 7, 8, 9, 10, a bowl falling mechanism for double-row bowl noodle machine, comprising a rack 10, a first bowl falling mechanism 20a, a second bowl falling mechanism 20b, a material clamping mechanism 30, a suction cup turnover mechanism 40 and a material placing turnover mechanism 50, the first bowl falling mechanism 20a and the second bowl falling mechanism 20b are both installed on the rack 10, the bottom of the first bowl falling mechanism 20a and the second bowl falling mechanism 20b is provided with the material clamping mechanism 30, the suction cup turnover mechanism 40 and the material placing turnover mechanism 50 are both connected with the rack 10, the first bowl falling mechanism 20a and the second bowl falling mechanism 20b are used to process two different specifications of paper bowls required by the double-row bowl noodle machine respectively, the material clamping mechanism 30 is used to make the paper bowls in the first bowl falling mechanism 20a and the second bowl falling mechanism 20b fall in order, the suction cup turnover mechanism 40 is used to adsorb one side of the paper bowl and turn over the other side and then fall on the material placing turnover mechanism 50, the material placing turnover mechanism 50 is used to clamp and fix two different specifications of paper bowls and then turn over and position them on the double-row bowl noodle machine (the double-row bowl noodle machine contains a conveying mechanism, and the transmission chain plate of the conveying mechanism is provided with positioning grooves for adapting to the ground of the paper bowl).

[0033] As an embodiment, the first bowl falling mechanism 20a and the second bowl falling mechanism 20b both comprise a plurality of cylinder bodies 21, a fixed plate 22, a support rod 23 and a side strip 24, the cylinder bodies 21 are arranged and installed on the fixed plate 22 at fixed intervals, and the fixed plate 22 is provided with through holes for adapting to the caliber of the cylinder bodies 21, the support rod 23 is installed at the bottom of the four corners of the cylinder body 21, and the support rod 23 is movably installed on the rack 10 through the side strip 24;

[0034] The front and rear ends of the fixed plate 22 are symmetrically provided with cross beam air cylinders 221, the bottom output end of the cross beam air cylinder 221 is connected with a cross beam plate 222 after penetrating through the fixed plate 22, the left and right ends of the cross beam plate 222 are both provided with vertical guide rods 223, the vertical guide rods 223 are movably connected with the fixed plate 22 through linear bearings, and the bottom wall of the cross beam plate 222 is connected with the material clamping mechanism 30.

[0035] As an embodiment, the material clamping mechanism 30 is provided with two groups, and the two groups of material clamping mechanisms 30 are respectively installed below the first bowl falling mechanism 20a and the second bowl falling mechanism 20b;

[0036] The jamming mechanism 30 comprises a support plate 31, a fixed shaft 32, a first upper support plate 33, a first lower support plate 34, a second upper support plate 35, a second lower support plate 36, a first jamming cylinder 37 and a second jamming cylinder 38. The support plate 31 is symmetrically arranged at both ends of the jamming mechanism 30. The fixed shaft 32 is provided with a plurality of ends for connecting the left and right symmetric support plates 31. The fixed shaft 32 is connected to the first upper support plate 33, the first lower support plate 34, the second upper support plate 35 and the second lower support plate 36 through a linear bearing between the two support plates 31. The first jamming cylinder 37 comprises two groups, and the piston ends of the upper and lower groups of the first jamming cylinder 37 are respectively connected to the first upper support plate 33 and the first lower support plate 34. The second jamming cylinder 38 comprises two groups, and the piston ends of the upper and lower groups of the second jamming cylinder 38 are respectively connected to the second upper support plate 35 and the second lower support plate 36. The first upper support plate 33 is located directly above the first lower support plate 34, and the second upper support plate 35 is located directly above the second lower support plate 36. The first upper support plate 33, the first lower support plate 34, the second upper support plate 35 and the second lower support plate 36 are symmetrically arranged. The first upper support plate 33, the first lower support plate 34, the second upper support plate 35 and the second lower support plate 36 are respectively symmetrically provided with cup clamping foils 39 for controlling the blanking of paper bowls.

[0037] As an embodiment, the first jamming cylinder 37 is installed on the support plate 31 away from the first upper support plate 33 and the first lower support plate 34, and the second jamming cylinder 38 is installed on the support plate 31 close to the first upper support plate 33 and the first lower support plate 34. The first upper support plate 33 and the first lower support plate 34 have the same size, and the second upper support plate 35 and the second lower support plate 36 have the same size. The two ends of the second upper support plate 35 and the second lower support plate 36 exceed the coverage range of the first upper support plate 33 and the first lower support plate 34. The second jamming cylinder 38 is installed on the front and rear ends of the support plate 31. The first jamming cylinder 37 and the second jamming cylinder 38 are composed of two groups of cylinders respectively for driving the upper support plate and the lower support plate, so that the upper support plate and the lower support plate move relatively.

[0038] As an embodiment, the cup clamping foil 39 comprises an upper foil 39a and a lower foil 39b. The upper foil 39a is symmetrically installed on the first upper support plate 33 and the second upper support plate 35, and the lower foil 39b is symmetrically installed on the first lower support plate 34 and the second lower support plate 36. The upper foil 39a is located directly above the lower foil 39b. The upper foil 39a and the lower foil 39b are respectively horizontally arranged on the first upper support plate 33, the second upper support plate 35, the first lower support plate 34 and the second lower support plate 36.

[0039] In one embodiment, the suction cup flipping mechanism 40 includes an end plate 41, a rotating rod 42, and a plurality of suction cups 43. The end plate 41 is symmetrically arranged at both ends of the rotating rod 42, and the plurality of suction cups 43 are arranged at fixed intervals on the rotating rod 42. A floating adjustment assembly 44 is installed at both ends of the end plate 41. The floating adjustment assembly 44 includes a slider 441, a guide rail 442, a short shaft 443, a connecting rod 444, a floating plate 445, a bearing 446, a floating rod 447, and a crank 445. 48 and motor gear set 449, slider 441 are installed at both ends of end plate 41, end plate 41 is slidably connected to guide rail 442 through slider 441, short shaft 443 is movably installed on frame 10, one end of short shaft 443 is sleeved with connecting rod 444, bottom end of connecting rod 444 is rotatably connected with floating plate 445, one end of floating plate 445 is connected to shaft seat 446, floating plate 445 is also connected to motor gear set 449 through floating rod 447 and crank 448.

[0040] In one embodiment, a driver (gear motor) for rotating and flipping the rotating rod 42 is installed on the end plate 41.

[0041] In one embodiment, the motor gear set 449 includes a servo motor, a reducer, and a transmission gear. The servo motor is connected to the transmission gear through the reducer, and the transmission gear is also connected to the crank 448 to transmit force.

[0042] In one embodiment, the material feeding and turning mechanism 50 is located directly below the suction cup turning mechanism 40, and the material feeding and turning mechanism 50 includes a motor 51, a frame 52, and a bearing seat 53. The motor 51 is mounted on one side of the frame 10, and the output end of the motor 51 is connected to the frame 52. The end of the frame 52 away from the motor 51 is connected to the frame 10 through the bearing seat 53. The material feeding and turning mechanism 50 also includes several protrusions 54, grippers 55, a rotating shaft 56, a connecting rod 57, and a gripper cylinder 58. 8. Protrusions 54 are arranged at equal intervals on the upper and lower outer walls of the frame 52. Each of the protrusions 54 has a gripper 55 on both sides. The gripper 55 is connected to the rotating shaft 56. The rotating shaft 56 passes through the frame 52 vertically and is connected to the connecting rod 57 inside the frame 52. The end of the connecting rod 57 away from the rotating shaft 56 is rotatably connected to the connecting shaft 571. The connecting rod 57 is connected to a horizontally placed push-pull plate 572 through the connecting shaft 571. The output end of the gripper cylinder 58 is sleeved on the push-pull plate 572.

[0043] In one embodiment, the frame 10 is provided with a slide rail mechanism 60, which is used to switch the positions of the first bowl dropping mechanism 20a and the second bowl dropping mechanism 20b relative to the suction cup flipping mechanism 40.

[0044] As an implementation form, the slide rail mechanism 60 comprises a slide rail 61, an electric telescopic rod 62, a push block 63 and a sliding base 64, the slide rail 61 and the electric telescopic rod 62 are both mounted on the rack 10, the telescopic end of the electric telescopic rod 62 is connected with the sliding base 64 through the push block 63, the sliding base 64 is in sliding connection with the slide rail 61, and the top wall of the sliding base 64 is connected with the edge strip 24 of the first bowl dropping mechanism 20a and the second bowl dropping mechanism 20b.

[0045] As an implementation form, a strip-shaped opening 11 for adapting the floating adjusting assembly 44 is formed on the rack 10, the inner side wall of the strip-shaped opening 11 is in movable connection with the short shaft 443 of the floating adjusting assembly 44, and the longitudinal strip-shaped opening 11 formed on the rack 10 facilitates the longitudinal displacement of the floating adjusting assembly 44.

[0046] The utility model discloses a working principle: when using, first, the first bowl mechanism 20a or the second bowl mechanism 20b is selected and used according to different demands, and the position of the first bowl mechanism 20a or the second bowl mechanism 20b is adjusted through the slide rail mechanism 60, so that the idle bowl mechanism is located at one side of the rack 10, and the bowl mechanism of the required specification is located directly above the suction cup turnover mechanism 40, then the paper tube of the corresponding specification can be put into the cylinder body 21, and the stacked paper bowl is in the cylinder body 21, wherein the lowermost paper bowl is limited and assisted by the material clamping mechanism 30, and the material clamping mechanism 30 is specifically through the smaller gap of the upper metal sheet 39a to drag the paper bowl, when the first upper support plate 33 and the second upper support plate 35 move to the both sides of the paper bowl respectively, the gap between the upper metal sheet 39a becomes larger, and then one paper bowl falls into the gap of the lower metal sheet 39b, and then the first upper support plate 33 and the second upper support plate 35 are reset through the cooperation of the first material clamping cylinder 37 and the second material clamping cylinder 38, so that the gap of the upper metal sheet 39a becomes smaller and drags the paper bowl of the upper layer (the diameter of the paper bowl opening is larger than the outer wall of the paper bowl, so as to facilitate clamping and fixing), all the suction cups 43 of the suction cup turnover mechanism 40 are all towards the bottom wall of the paper bowl, the height of the suction cup 43 is adjusted through the floating adjusting assembly 44 and is attached to the bottom wall of the double-row paper bowl, and then the suction cup 43 completes the adsorption action, then the first lower support plate 34 and the second lower support plate 36 are away from each other under the cooperation of the first material clamping cylinder 37 and the second material clamping cylinder 38, the gap between the lower metal sheet 39b is enlarged, the paper bowl that falls first and has been adsorbed by the suction cup 43 performs the turnover action, the suction cup 43 is turned over 180 degrees vertically towards the lower side through the rotating rod 42, at this moment, the paper bowl is directly above the material placing turnover mechanism, the height of the suction cup 43 is lowered to the lowest through the floating adjusting assembly 44, and the suction cup 43 is closed, the opening of all the paper bowls falls on the material placing turnover mechanism 50, and the protruding block 54 is located in the opening of the paper bowl, at this moment, the clamping jaw cylinder 58 drives the push-pull plate 572 to displace horizontally, the connecting shaft 571 is rotated, and then the linkage connecting rod 57 and the rotating shaft 56 make the clamping jaws relatively rotate and fix the paper bowl in the middle, then the frame body 52 is turned over 180 degrees through the motor, and the paper bowl is made to face the ground again, finally, the clamping jaw 55 is reset through the clamping jaw cylinder 58, and the clamped paper bowl falls into the positioning groove of the bowl surface machine conveying mechanism, so that the reciprocating operation can complete the processing action of two different specifications of paper bowls.

[0047] It should be noted that the description and drawings of the utility model give the preferred embodiments of the utility model, however, the utility model can be realized through many different forms, and is not limited to the embodiments described in the description, the embodiments are not as additional limitation to the content of the utility model, the purpose of providing the embodiments is to make the understanding of the disclosure of the utility model more thorough and comprehensive. Furthermore, the above technical features continue to combine with each other, form various embodiments not listed above, all are regarded as the range of the description of the utility model; further, for the ordinary skilled person in the art, the above description can be improved or transformed, and all these improvements and transformations should belong to the protection scope of the utility model claims.

Claims

1. A bowl drop mechanism for a double-bowl noodle machine, characterized by, The utility model relates to a double-row bowl face machine paper bowl processing device, including frame (10), first bowl falling mechanism (20a), second bowl falling mechanism (20b), material clamping mechanism (30), sucking disc overturning mechanism (40) and material placing overturning mechanism (50), first bowl falling mechanism (20a) and second bowl falling mechanism (20b) are installed on frame (10), and the bottom of first bowl falling mechanism (20a) and second bowl falling mechanism (20b) is equipped with material clamping mechanism (30), and sucking disc overturning mechanism (40) and material placing overturning mechanism (50) are connected with frame (10), first bowl falling mechanism (20a) and second bowl falling mechanism (20b) are used to handle two different specifications of paper bowl required by double-row bowl face machine respectively, material clamping mechanism (30) is used to make paper bowl in first bowl falling mechanism (20a) and second bowl falling mechanism (20b) fall according to order, sucking disc overturning mechanism (40) is used to adsorb one side of paper bowl and overturns other side and falls on material placing overturning mechanism (50), and material placing overturning mechanism (50) is used to clamping two different specifications of paper bowl and positions and places after overturning to double-row bowl face machine.

2. A bowl dropping mechanism for a double bowl noodle machine according to claim 1, wherein First bowl falling mechanism (20a) and second bowl falling mechanism (20b) all include several cylinder (21), fixed plate (22), support rod (23) and batten (24), cylinder (21) is installed on fixed plate (22) according to fixed interval, and the through hole for adapting the caliber of cylinder (21) is set up on fixed plate (22), support rod (23) is installed at the bottom four corners of cylinder (21), and support rod (23) is movably installed on frame (10) through batten (24), The front and rear ends of fixed plate (22) are symmetrically provided with crossbeam pneumatic cylinder (221), the bottom output end of crossbeam pneumatic cylinder (221) is connected with crossbeam plate (222) after penetrating fixed plate (22), the left and right ends of crossbeam plate (222) are provided with vertical guide rod (223), vertical guide rod (223) is movably connected with fixed plate (22) through linear bearing, and the bottom wall of crossbeam plate (222) is connected with material clamping mechanism (30).

3. A bowl dropping mechanism for a double bowl noodle machine according to claim 2, wherein The material clamping mechanism (30) is provided with two groups, and the two groups of material clamping mechanism (30) are installed below the first bowl falling mechanism (20a) and the second bowl falling mechanism (20b) respectively. The jamming mechanism (30) comprises a support plate (31), a fixed shaft (32), a first upper support plate (33), a first lower support plate (34), a second upper support plate (35), a second lower support plate (36), a first jamming cylinder (37) and a second jamming cylinder (38), the support plate (31) is symmetrically arranged at both ends of the jamming mechanism (30), a plurality of fixed shafts (32) are arranged, and the two ends of the plurality of fixed shafts (32) are used for connecting the left and right symmetric support plates (31), the fixed shaft (32) is connected with the first upper support plate (33), the first lower support plate (34), the second upper support plate (35) and the second lower support plate (36) through a linear bearing between the two support plates (31), the first jamming cylinder (37) comprises two groups, the piston ends of the two groups of the first jamming cylinder (37) are used for connecting the first upper support plate (33) and the first lower support plate (34) respectively, the second jamming cylinder (38) comprises two groups, the piston ends of the two groups of the second jamming cylinder (38) are used for connecting the second upper support plate (35) and the second lower support plate (36) respectively, the first upper support plate (33) is located directly above the first lower support plate (34), the second upper support plate (35) is located directly above the second lower support plate (36), and the first upper support plate (33), the first lower support plate (34), the second upper support plate (35) and the second lower support plate (36) are symmetrically arranged, and the first upper support plate (33), the first lower support plate (34), the second upper support plate (35) and the second lower support plate (36) are symmetrically arranged, and the first upper support plate (33), the first lower support plate (34), the second upper support plate (35) and the second lower support plate (36) are symmetrically arranged, and the first upper support plate (33), the first lower support plate (34), the second upper support plate (35) and the second lower support plate (36) are symmetrically arranged, and the first upper support plate (33), the first lower support plate (34), the second upper support plate (35) and the second lower support plate (36) are symmetrically arranged, and the first upper support plate (33), the first lower support plate (34), the second upper support plate (35) and the second lower support plate (36) are symmetrically arranged, and the first upper support plate (33), the first lower support plate (34), the second upper support plate (35) and the second lower support plate (36) are symmetrically arranged, and the first upper support plate (33), the first lower support plate (34), the second upper support plate (35) and the second lower support plate (36) are symmetrically arranged, and the first upper support plate (33), the first lower support plate (34), the second upper support plate (35) and the second lower support plate (36) are symmetrically arranged, and the first upper support plate (33), the first lower support plate (34), the second upper support plate (35) and the second lower support plate (36) are symmetrically arranged, and the first upper support plate (33), the first lower support plate (34), the second upper support plate (35) and the second lower support plate (36) are symmetrically arranged, and the first upper support plate (33), the first lower support plate (34), the second upper support plate (35) and the second lower support plate (36) are symmetrically arranged, and the first upper support plate (33), the first lower support plate (34), the second upper support plate (35) and the second lower support plate (36) are symmetrically arranged, and the first upper support plate (33), the first lower support plate (34), the second upper support plate (35) and the second lower support plate (36) are symmetrically arranged, and the first upper support plate (33), the first lower support plate (34), the second upper support plate (35) and the second lower support plate (36) are symmetrically arranged, and the first upper support plate (33), the first lower support plate (34), the second upper support plate (35) and the second lower support plate (36) are symmetrically arranged, and the first upper support plate (33), the first lower support plate (34), the second upper support plate (35) and the second lower support plate (36) are symmetrically arranged, and the first upper support plate (33), the first lower support plate (34), the second upper support plate (35) and the second lower support plate (36) are symmetrically arranged, and the first upper support plate (33), the first lower support plate (34), the second upper support plate (35) and the second lower support plate (36) are symmetrically arranged, and the first upper support plate (33), the first lower support plate (34), the second upper support plate (35) and the second lower support plate (36) are symmetrically arranged, and the first upper support plate (33), the first lower support plate (34), the second upper support plate (35) and the second lower support plate (36) are symmetrically arranged, and the first upper support plate (33), the first lower support plate (34), the second upper support plate (35) and the second lower support plate (36) are symmetrically arranged, and the first upper support plate (33), the first lower support plate (34), the second upper support plate (35) and the second lower support plate (36) are symmetrically arranged, and the first upper support plate (33), the first lower support plate (34), the second upper support plate (35) and the second lower support plate (36) are symmetrically arranged, and the first upper support plate (33), the first lower support plate (34), the second upper support plate (35) and the second lower support plate (36) are symmetrically arranged, and the first upper support plate (33), the first lower support plate (34), the second upper support plate (35) and the second lower support plate (36) are symmetrically arranged, and the first upper support plate (33), the first lower support plate (34), the second upper support plate (35) and the second lower support plate (36) are symmetrically arranged, and the first upper support plate (33), the first lower support plate (34), the second upper support plate (35) and the second lower support plate (36) are symmetrically arranged, and the first upper support plate (33), the first lower support plate (34), the second upper support plate (35) and the second lower support plate (36) are symmetrically arranged, and the first upper support plate (33), the first lower support plate (34), the second upper support plate (35) and the second lower support plate (36) are symmetrically arranged, and the first upper support plate (33), the first lower support plate (34), the second upper support plate (35) and the second lower support plate (36) are symmetrically arranged, and the first upper support plate (33), the first lower support plate (34), the second upper support plate (35) and the second lower support plate (36) are symmetrically arranged, and the first upper support plate (33), the first lower support plate (34), the second upper support plate (35) and the second lower support plate (36) are symmetrically arranged, and the first upper support plate (33), the first lower support plate (34), the second upper support plate (35) and the second lower support plate (36) are symmetrically arranged, and the first upper support plate (33), the first lower support plate (34), the second upper support plate (35) and the second lower support plate (36) are symmetrically arranged, and the first upper support plate (33), the first lower support plate (34), the second upper support plate (35) and the second lower support plate (36) are symmetrically arranged, and the first upper support plate (33), the first lower support plate (34), the second upper support plate (35) and the second lower support plate (36) are symmetrically arranged, and the first upper support plate (33), the first lower support plate (34), the second upper support plate (35) and the second lower support plate (36) are symmetrically arranged, and the first upper support plate (33), the first lower support plate (34), the second upper support plate (35) and the second lower support plate (36) are symmetrically arranged, and the first upper support plate (33), the first lower support plate (34), the second upper support plate (35) and the second lower support plate (36) are symmetrically arranged, and the first upper support plate (33), the first lower support plate (34), the second upper support plate (35) and the second lower support plate (36) are symmetrically arranged, and the first upper support plate (33), the first lower support plate (34), the second upper support plate (35) and the second lower support plate (36) are symmetrically arranged, and the first upper support plate (33), the first lower support plate (34), the second upper support plate (35) and the second lower support plate (36) are symmetrically arranged, and the first upper support plate (33), the first lower support plate (34), the second upper support plate (35) and the second lower support plate (36) are symmetrically arranged, and the first upper support plate 4. A bowl dropping mechanism for a double bowl noodle machine according to claim 3, wherein ​ 5. A bowl dropping mechanism for a double bowl noodle machine according to claim 4, wherein The material placing and overturning mechanism (50) is located directly below the suction disc overturning mechanism (40), and the material placing and overturning mechanism (50) comprises a motor (51), a frame (52), a bearing seat (53), the motor (51) is installed on one side of the rack (10), the output end of the motor (51) is connected with the frame (52), the end of the frame (52) away from the motor (51) is connected with the rack (10) through the bearing seat (53), the material placing and overturning mechanism (50) further comprises a plurality of protrusions (54), clamping jaws (55), rotating shafts (56), connecting rods (57) and clamping jaw cylinders (58), the protrusions (54) are equidistantly and spacedly arranged on the upper and lower two outer walls of the frame (52), a plurality of clamping jaws (55) are arranged on the two sides of the protrusions (54), the clamping jaws (55) are connected with the rotating shafts (56), the rotating shafts (56) pass through the frame (52) up and down and are connected with the connecting rods (57) arranged in the frame (52), the connecting rods (57) are rotatably connected with the connecting shafts (571) at the ends away from the rotating shafts (56), the connecting rods (57) are connected with the horizontally arranged push-pull plates (572) through the connecting shafts (571), and the output end of the clamping jaw cylinder (58) is sleeved with the push-pull plate (572).

6. A bowl dropping mechanism for a double bowl noodle machine according to claim 5, wherein The rack (10) is provided with a sliding rail mechanism (60), and the sliding rail mechanism (60) is used for switching the positions of the first bowl falling mechanism (20a) and the second bowl falling mechanism (20b) relative to the suction disc overturning mechanism (40).

7. A bowl dropping mechanism for a double bowl noodle machine according to claim 6, wherein The sliding rail mechanism (60) comprises a sliding rail (61), an electric telescopic rod (62), a push block (63) and a sliding base (64), the sliding rail (61) and the electric telescopic rod (62) are both installed on the rack (10), the telescopic end of the electric telescopic rod (62) is connected with the sliding base (64) through the push block (63), the sliding base (64) is slidably connected with the sliding rail (61), and the top wall of the sliding base (64) is connected with the edge strips (24) of the first bowl falling mechanism (20a) and the second bowl falling mechanism (20b).