Discharging port refining device of dried meat floss drying machine
By designing a mechanically driven discharge port uniform device including a cutting groove, a curved inclined surface, a curved discharge rod and a uniform barrel, the problems of uneven drops of raw materials and low manual uniform efficiency during the discharge process of the meat floss dryer are solved, and uniform materials and sufficient heat dissipation of the meat floss raw materials are achieved, and the taste and production efficiency of the finished product are improved.
Patent Information
- Application Number
- CN202421573200.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-04
- Publication Date
- 2025-06-17
- Estimated Expiration
- 2034-07-04
AI Technical Summary
During the discharge process of the meat floss dryer, the drop points of the meat floss raw materials are irregular in the horizontal direction, resulting in uneven accumulation, and the underlying raw materials cannot fully dissipate heat, affecting the taste of the finished product, and artificial uniform materials are required, which has high labor intensity and poor results.
A mechanically driven discharge port uniform device is designed, including a cutting groove, an arcuate slope, an arcuate feed rod and a uniform barrel. By driving the motor, the arcuate feed rod and a uniform barrel are driven to move in the cutting groove to achieve uniform material and heat dissipation of meat floss raw materials.
The uniform drop and laying of meat floss raw materials is achieved, the full heat dissipation of raw materials is ensured, the secondary siltation of moisture is avoided, the taste of the finished product is improved, the intensity of manual labor is reduced, and the efficiency of uniform materials is improved.
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Figure CN222993448U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of floss food processing equipment, and more specifically, relates to a material leveling device at the discharge port of a floss dryer. Background Art
[0002] Floss is a special food that many people like. The nutritional components of floss are very rich, delicious and palatable. The finished product can be directly eaten, and it is also an essential raw material for many ingredients, such as toast bread, glutinous rice balls, omelette rice, sushi, etc. It can also be used to cook porridge and make cold dishes. Floss is relatively soft and very suitable for children and the elderly to eat.
[0003] The floss dryer is one of the essential equipment in the batch processing process of floss factories. It is generally used in the drying process to further remove the moisture in the floss raw materials, make the floss fluffy and improve the edible taste. Specifically, the floss dryer includes a rotatable drying cylinder whose angle can be adjusted. During operation, the opening of the rotatable drying cylinder is inclined upward, and the floss raw materials inside are rotated and dried. After the work is completed, the opening of the rotatable drying cylinder is inclined downward, and the dried floss raw materials inside flow out in sequence by rotation, and are collected through the aggregate chute above the trolley and transported to the next processing procedure.
[0004] During the above drying and discharging process, the following problems exist: First, during the rotation and discharging process of the rotatable drying cylinder, the falling points of the floss raw materials are horizontally irregular and cannot be accurately controlled, resulting in uneven heights of the floss raw materials piled up at the edge of the aggregate chute. The floss raw materials at the bottom cannot be fully cooled, and moisture will accumulate again, affecting the taste of the finished floss. Second, the existing aggregate chute has floss raw materials piled up at the edge, and manual raking claws need to be used to continuously level the materials outward. The labor intensity is relatively large, and the manual leveling effect is not good enough to meet the requirement of spreading and cooling the floss raw materials. Summary of the Utility Model
[0005] The purpose of the utility model is to provide a material leveling device at the discharge port of a floss dryer. The material leveling device at the discharge port uses mechanical drive to replace the traditional manual leveling. The leveling is more uniform and reliable, ensuring the spreading and cooling effect of the floss raw materials. At the same time, a special feeding chute structure is designed to collect the irregular floss raw materials falling from different horizontal areas, facilitating the leveling process.
[0006] In order to achieve the above purpose, the technical solution adopted by the utility model is as follows:
[0007] A uniform material device for the discharge port of a dried meat floss dryer, comprising a dryer body. Inside the dryer body, a rotating drying cylinder is rotatably connected through a rotating wheel. The rotating drying cylinder discharges materials in a downward inclination. Below the discharge port of the rotating drying cylinder, a feeding chute is connected through a number of spaced L-shaped telescopic connecting rods. Below the feeding chute, there is a horizontal conveyor belt, and a number of collecting grooves are equidistantly spaced on the conveyor belt. The lower non-telescopic sections of the L-shaped telescopic connecting rods are all fixed to the bottom plate. The L-shaped telescopic connecting rods are limited by locking nuts on the sides of the non-telescopic sections. The bottom plate is located in the area below the conveyor belt.
[0008] As a further optimization of this solution, an arc-shaped inclined surface is processed in the hollow area of the feeding chute. The height of the arc-shaped inclined surface decreases sequentially from left to right. The left side of the arc-shaped inclined surface extends to the left edge position of the feeding chute, and the right side of the arc-shaped inclined surface extends to the left edge position of the through groove on the bottom surface of the feeding chute. The through groove is opened at the right edge position of the bottom surface of the feeding chute. The width of the through groove is smaller than the width of the collecting groove.
[0009] As a further optimization of this solution, two telescopic connecting rods are also provided on the left side of the bottom plate. The upper telescopic section of the outer telescopic connecting rod is welded and fixed with a driving motor through an arc-shaped bracket. The output shaft of the driving motor extends inward, and external threads are processed on the periphery of the output shaft. The upper telescopic section of the inner telescopic connecting rod is connected with a guide rod, and there are one limit retaining ring in the front and one in the back on the rod body of the guide rod. A sliding sleeve is sleeved on the output shaft and the guide rod. The through hole area where the sliding sleeve contacts the output shaft is processed with internal threads, and the through hole where the sliding sleeve contacts the guide rod is processed into a smooth surface. A number of arc-shaped material pushing rods are connected to the right side of the sliding sleeve and are spaced up and down.
[0010] As a further optimization of this solution, the arc-shaped material pushing rods all extend into the hollow area of the feeding chute. Uniform material cylinders are sleeved on the rod bodies of the arc-shaped material pushing rods. The radian of the uniform material cylinder is the same as the radian of the arc-shaped inclined surface, and the length of the uniform material cylinder is the same as the length of the arc-shaped inclined surface.
[0011] As a further optimization of this solution, the driving motor is externally connected to the control power supply box of the dryer through a circuit.
[0012] Compared with the prior art, the beneficial effects of the present utility model are as follows:
[0013] In the present utility model, a dedicated blanking chute structure is provided to collect all the irregularly falling meat floss raw materials in the area of the discharge port of the rotating drying cylinder. In combination with several arc-shaped material guiding rods arranged at intervals up and down and a material leveling cylinder structure, the accumulation of meat floss raw materials is reduced, and the material leveling operation is carried out on the meat floss raw materials on the arc-shaped inclined surface, so that the meat floss raw materials fall neatly and sequentially through the through slots under the action of gravity into the aggregate chute inside the lower conveyor belt. Then, in combination with the transverse movement of the aggregate chute, the meat floss raw materials are evenly spread on each position of the aggregate chute, ensuring the heat dissipation effect of the meat floss raw materials and avoiding secondary accumulation of moisture. BRIEF DESCRIPTION OF THE DRAWINGS
[0014] Figure 1 Schematic diagram of the installation structure of the material leveling device of the present utility model;
[0015] Figure 2 Schematic diagram of the blanking chute structure of the present utility model;
[0016] Figure 3 Schematic diagram of the material leveling cylinder structure of the present utility model;
[0017] In the figure: 1, dryer body; 2, rotating drying cylinder; 3, bottom plate; 4, L-shaped telescopic connecting rod; 5, locking nut; 6, blanking chute; 7, conveyor belt; 8, aggregate chute; 9, arc-shaped inclined surface; 10, through slot; 11, guide rod; 12, limit retaining ring; 13, sliding sleeve; 14, output shaft; 15, drive motor; 16, arc-shaped material guiding rod; 17, material leveling cylinder; 18, telescopic connecting rod. DETAILED DESCRIPTION OF THE INVENTION
[0018] In order to make the technical means, creative features, achieved purposes and effects of the utility model easy to understand, the present utility model will be further described below with reference to specific drawings.
[0019] In order to solve the problems that the falling points of the existing meat floss raw materials are horizontally irregular and cannot be accurately controlled, resulting in uneven heights of the meat floss raw materials piled up at the edge of the aggregate chute, and that the existing meat floss raw materials are piled up at the edge of the aggregate chute, and it is necessary to manually use a rake to continuously level the materials outward, with a large labor intensity and poor manual leveling effect, and it cannot meet the requirement of the meat floss raw materials for flat spreading and heat dissipation, as Figure 1 shown, the present application includes a dryer body 1. Inside the dryer body 1, a rotating drying cylinder 2 is rotatably connected through a rotating wheel. The rotating drying cylinder 2 is inclined downward for discharging. Below the discharge port of the rotating drying cylinder 2, a blanking chute 6 is connected through a plurality of spaced L-shaped telescopic connecting rods 4. Below the blanking chute 6, there is a horizontal conveyor belt 7, and a plurality of aggregate chutes 8 are equidistantly arranged at intervals on the conveyor belt 7. The lower non-telescopic sections of the L-shaped telescopic connecting rods 4 are all fixed to the bottom plate 3. The L-shaped telescopic connecting rods 4 are limited by the locking nuts 5 on the side of the non-telescopic sections. The bottom plate 3 is located in the area below the conveyor belt 7;
[0020] like Figure 2 As shown, the hollow area in the feed chute 6 is processed with an arc-shaped inclined surface 9, and the height of the arc-shaped inclined surface 9 decreases from left to right. The left side of the arc-shaped inclined surface 9 extends to the left edge of the feed chute 6 and the right side of the arc-shaped inclined surface 9 extends to the left edge of the through groove 10 on the bottom surface of the feed chute 6. The through groove 10 is opened at the right edge of the bottom surface of the feed chute 6. The width of the through groove 10 is smaller than the width of the collection chute 8. Two telescopic connecting rods 18 are also provided on the left side of the bottom plate 3, and the telescopic section of the upper end of the telescopic connecting rod 18 located on the outside is extended by an arc-shaped A driving motor 15 is welded and fixed to the bracket, and the output shaft 14 of the driving motor 15 extends inward and the outer periphery of the output shaft 14 is processed with an external thread, wherein the telescopic section at the upper end of the telescopic connecting rod 18 located on the inner side is connected to the guide rod 11 and the guide rod 11 is provided with a front and rear limit ring 12, and a sliding sleeve 13 is mounted on the output shaft 14 and the guide rod 11, and the through hole area where the sliding sleeve 13 contacts the output shaft 14 is processed with an internal thread, and the through hole where the sliding sleeve 13 contacts the guide rod 11 is processed into a smooth surface.
[0021] like Figure 3 As shown, a plurality of arc-shaped material-moving rods 16 spaced apart vertically are connected to the right side of the sliding sleeve 13, and the arc-shaped material-moving rods 16 all extend into the hollow area in the feed chute 6, and a material-mixing barrel 17 is mounted on the rod body of the arc-shaped material-moving rod 16, and the curvature of the material-mixing barrel 17 is the same as that of the arc-shaped inclined surface 9, and the length of the material-mixing barrel 17 is the same as that of the arc-shaped inclined surface 9.
[0022] Specifically, the left side of the material discharge chute 6 corresponds to the position directly below the discharge port of the rotating drying drum 2. The staff can reasonably adjust the lengths of all L-shaped telescopic connecting rods 4 and telescopic connecting rods 18 through the locking nut 5 according to the tilted position of the rotating drying drum 2, so that the material discharge chute 6 and the arc-shaped material shifting rod 16 are located in appropriate positions. The number of arc-shaped material shifting rods 16 is determined according to the depth of the material discharge chute 6 (two in the figure), and the number of L-shaped telescopic connecting rods 4 is determined according to the length of the material discharge chute 6 (two in the figure). When the rotating drying drum 2 is rotating to discharge the material, the meat floss raw materials fall from the discharge port and all fall onto the arc-shaped inclined surface 9. The driving motor 15 drives the output shaft 14 to rotate forward and reverse, thereby driving the sliding sleeve 13 to reciprocate along the rod body of the guide rod 11, and finally driving all the inner arc-shaped material-moving rods 16 and the material-leveling barrel 17 to reciprocate linearly inside the feed chute 6, and performing a material-leveling operation on the meat floss raw materials on the arc-shaped inclined surface 9 in the feed chute 6. Under the action of gravity, the meat floss raw materials move downward along the arc-shaped inclined surface 9 and fall from the through groove 10 to the inside of the aggregate trough 8 below. At the same time, the aggregate trough 8 is driven to move horizontally by the conveyor belt 7, so that the fallen meat floss raw materials are evenly spread to various positions inside the aggregate trough 8, thereby achieving the effect of automatic material leveling.
[0023] All the standard parts used in the present utility model can be purchased from the market. The special-shaped parts can be customized according to the description in the specification and the drawings. The specific connection methods of each part all adopt conventional means such as bolts, rivets, welding, etc. which are mature in the prior art. The machinery, parts and equipment all adopt the conventional models in the prior art. In addition, the circuit connection adopts the conventional connection method in the prior art, which will not be elaborated here.
[0024] The above has shown and described the basic principles, main features and advantages of the present utility model. Those skilled in the art should understand that the present utility model is not limited by the above embodiments. The above embodiments and the description in the specification only illustrate the principles of the present utility model. Without departing from the spirit and scope of the present utility model, the present utility model will have various changes and improvements, and all these changes and improvements fall within the scope of the present utility model claimed. The scope of protection claimed by the present utility model is defined by the appended claims and their equivalents.
Claims
1. A material mixing device at the outlet of a meat floss dryer, comprising a dryer body, wherein a rotating drying cylinder is rotatably connected to the inside of the dryer body through a rotating wheel, and the rotating drying cylinder tilts downward to discharge the material, characterized in that: The lower part of the discharging port of the rotary drying drum is connected with a feeding chute through a plurality of spaced L-shaped telescopic connecting rods, a transverse conveyor belt is arranged below the feeding chute, and a plurality of collecting troughs are arranged at equal intervals on the conveyor belt, the non-telescopic sections at the lower ends of the L-shaped telescopic connecting rods are fixed to the bottom plate, the L-shaped telescopic connecting rods are limited by locking nuts on the sides of the non-telescopic sections, the bottom plate is located in the area below the conveyor belt, an arc-shaped inclined surface is processed in the hollow area in the feeding chute, the height of the arc-shaped inclined surface decreases from left to right, the left side of the arc-shaped inclined surface extends to the left edge position of the feeding chute, and the right side of the arc-shaped inclined surface extends to the left edge position of the through groove on the bottom surface of the feeding chute, and the through groove is opened at the bottom of the feeding chute At the right edge of the surface, the width of the through groove is smaller than the width of the aggregate trough, and two telescopic connecting rods are further provided on the left side of the base plate, wherein the telescopic section at the upper end of the telescopic connecting rod located on the outside is welded and fixed with a driving motor through an arc-shaped bracket, and the output shaft of the driving motor extends inwardly and the outer periphery of the output shaft is processed with an external thread, wherein the telescopic section at the upper end of the telescopic connecting rod located on the inside is connected to a guide rod and a front and rear limit retaining ring is provided on the body of the guide rod, a sliding sleeve is mounted on the output shaft and the guide rod, the through hole area where the sliding sleeve contacts the output shaft is processed with an internal thread, and the through hole where the sliding sleeve contacts the guide rod is processed into a smooth surface, and a number of arc-shaped material-push rods spaced apart up and down are connected to the right side of the sliding sleeve.
2. The material mixing device at the outlet of the meat floss drying machine according to claim 1, characterized in that: The arc-shaped material-moving rods are all extended into the hollow area of the material-discharging trough, and the arc-shaped material-moving rods are all equipped with material-scrambling barrels. The curvature of the material-scrambling barrels is the same as that of the arc-shaped inclined plane, and the length of the material-scrambling barrels is the same as that of the arc-shaped inclined plane.
3. The material mixing device at the outlet of the meat floss drying machine according to claim 2, characterized in that: The driving motor is externally connected to the dryer through a line to control the power supply box.