Fried milk strip tidying device

By designing an automatic finishing device for fried milk strips, the automatic separation and finishing of milk strips is achieved by using vibrating motors and waveform chutes, solving the problem of low manual pick-up efficiency, improving production efficiency and convenient packaging.

CN223060018UActive Publication Date: 2025-07-04GOLDEN LOUIS (TANGSHAN CAOFEIDIAN) FOOD CO LTD
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Patent Information

Application Number
CN202422026400.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-21
Publication Date
2025-07-04
Estimated Expiration
2034-08-21

AI Technical Summary

Technical Problem

In the prior art, the fried milk strips are taken out of the fryer and become disordered piles, with adhesions and low manual picking and placement efficiency, which affects production efficiency.

Method used

A device including a rack, slag bin, material slide plate and vibrating motor is designed. The slag bin and material slide plate are driven by the vibrating motor, and the chute and barrier of the waveform curve are used to realize the automatic sorting and separation of milk strips. The lightly adhered milk strips are automatically separated, and the heavily adhered milk strips are waiting for manual processing.

Benefits of technology

It effectively solves the problem of manual picking and placement, improves production efficiency, facilitates product packaging, and the equipment can adjust production capacity according to production needs to avoid waste.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a fried milk strip tidying device which comprises a machine frame, a residue bin, a material sliding plate and a vibration motor, the machine frame comprises four stand columns, and the four stand columns are connected through a cross beam; the slag bin is mounted at the top of the rack and comprises a slag receiving plate and a side baffle, and a slag outlet is formed in one end of the slag receiving plate; the material sliding plate is composed of a material receiving plate, a sliding groove plate and a discharging plate, the material receiving plate is fixed to the upper end of the sliding groove plate, and coarse slag holes are formed in the plate face of the material receiving plate transversely and longitudinally. The chute plate is provided with a plurality of chutes, the width of the chutes is matched with the diameter of the fried milk strips, and the chutes are uniformly provided with fine slag holes; the discharging plate is installed at the lower end of the sliding groove plate and provided with a plurality of sliding grooves. According to the automatic sorting and placing device, the problem of manual sorting and placing can be effectively solved, product packaging is facilitated, and the production efficiency is improved.
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Description

Technical Field

[0001] The utility model belongs to the technical field of food processing, and particularly relates to a fried milk strip sorting device. Background Art

[0002] The primary product of fried milk strips is completed by primary frying in a fryer. The primary fried milk strips are fished out of the fryer and packaged as sold products. When packaging, neatly arranged milk strips will make the product more beautiful. However, the batch of milk strips directly out of the fryer is an unordered pile of materials and there is a situation of adhesion. In the prior art, the milk strips are manually arranged one by one. Those with mild adhesion can be directly separated, and those with severe adhesion are picked out. The efficiency of manual selection and arrangement is low. Content of the Utility Model

[0003] The utility model provides a device for automatically sorting and arranging fried milk strips to solve the technical problems in the prior art and improve production efficiency.

[0004] The technical solution adopted by the utility model to solve the above problems is as follows:

[0005] A fried milk strip sorting device includes a frame, a slag bin, a material slide plate and a vibration motor.

[0006] The frame includes four columns, and the four columns are connected by cross beams.

[0007] The slag bin is installed on the top of the frame and includes a slag receiving plate and side baffle plates. One end of the slag receiving plate is a slag outlet.

[0008] The material slide plate is composed of a material receiving plate, a chute plate and a discharging plate. The material receiving plate is fixed to the upper end of the chute plate, and thick slag holes are arranged horizontally and vertically on its plate surface; the chute plate is provided with a number of chutes, the width of the chutes is adapted to the diameter of the fried milk strips, and fine slag holes are evenly arranged in the chutes; the discharging plate is installed at the lower end of the chute plate and is provided with a number of material sliding grooves.

[0009] The vibration motor is installed at the bottom of the slag bin and is used to drive the slag bin and the material slide plate to vibrate.

[0010] The utility model with the above structure, compared with the prior art, has the beneficial effects that:

[0011] The utility model can effectively solve the problem of manual sorting and arranging, facilitate product packaging and improve production efficiency.

[0012] As a preference, the further technical solution of the above structure is:

[0013] The chute plate is composed of a number of groove group strips, the cross section of the groove group strips is a waveform curve, the left end of the groove group strip is overlapped with the right end of the adjacent groove group strip and fixed by a locking bolt; the production capacity of the equipment can be adjusted according to production needs.

[0014] The groove bar group contains at least one trough, the left end to the secondary wave point on the left side of the wave crest point, and the right end to the secondary wave point on the right side of the wave crest point. In this example, after the two adjacent groove bar groups are overlapped, the overlap seams are all facing downwards, thereby preventing oil residue from entering, which greatly facilitates the cleaning of the groove bar group.

[0015] The upper ends of the side walls on both sides of the chute are inclined toward the middle. This implementation makes it difficult for the upper side of the milk bar to fall into the corresponding milk bar after it falls into the chute. The upper side milk bar can be supported by the upper end of the chute and cannot be completely pressed onto the lower side milk bar, thus avoiding the situation where the lower side milk bar is pressed and deformed.

[0016] A blocking piece is provided in the middle of the material slide plate, which is suspended on the upper side of the chute plate and is used to limit the height of the material flowing through the chute; the blocking piece stops the fried milk strips sliding horizontally along the wave crest, and the fried milk strips are tilted and fall into the chute through vibration and the movement of the blocking piece, so that the lightly adhered fried milk strips are separated, and the heavily adhered fried milk strips are piled at the position of the blocking piece waiting to be taken out manually.

[0017] Optionally, the blocking member includes a floating plate, a U-shaped buckle plate and an adjusting screw, wherein both ends of the U-shaped buckle plate are fixed to both sides of the material slide plate, and its lower edge falls on the top of the slide chute plate, and one side of the vertical plate is provided with a long hole; the upper side of the floating plate is installed in the U-shaped buckle plate, and a threaded hole is provided at the position corresponding to the long hole, and a blocking tongue corresponding to the chute is provided on the lower side of the floating plate, and the blocking tongue extends into the chute; the adjusting screw passes through the long hole and is threadedly connected to the threaded hole, and the inner end of the adjusting screw abuts against the vertical plate on the other side of the U-shaped buckle plate.

[0018] Optionally, the blocking member includes a fixed sleeve, a plurality of floating tongues are inserted in the fixed sleeve, the lower edge of the fixed sleeve falls on the top of the chute, the lower end of the floating tongue extends into the chute, and the upper end of each floating tongue is connected to a connecting rod, wherein two floating tongues are provided with racks on the sides, and two gears meshing with the racks are provided in the fixed sleeve, and the two gears are mounted on a shaft, and both ends of the shaft pass through the fixed sleeve and are rotatably connected to the fixed sleeve, and a rotating handle is installed at one end of the shaft. In this embodiment, the staff can realize the synchronous lifting and lowering control of all the blocking tongues on one side of the equipment, making the adjustment more convenient. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] Figure 1 It is a schematic diagram of the overall structure of the utility model;

[0020] Figure 2 It is a schematic diagram of the internal structure of the utility model;

[0021] Figure 3 This is a schematic diagram of the structure of the slot group bar of the utility model;

[0022] Figure 4 This is a schematic diagram of the groove assembly bar assembly structure of the utility model;

[0023] Figure 5 This is a structural diagram of a first embodiment of a blocking member of the utility model;

[0024] Figure 6 It is a schematic diagram of the internal structure on one side of an embodiment of the blocking member of the present utility model;

[0025] Figure 7 It is an exploded view of an embodiment of the blocking member of the present utility model;

[0026] Figure 8 It is a structural diagram of the second embodiment of the blocking member of the present utility model;

[0027] Figure 9 It is a schematic diagram of the internal structure of the second embodiment of the blocking member of the present utility model;

[0028] Figure 10 It is a structural diagram of the gear-rack cooperation of the present utility model.

[0029] In the figure: 1, frame; 2, slag bin; 201, side baffle; 202, slag receiving plate; 3, material receiving plate; 4, chute plate; 401, groove group strip; 402, fine slag hole; 403, locking bolt; 404, wave peak; 405, wave valley; 406, left secondary wave point; 407, right secondary wave point; 408, overlapping seam; 5, discharging plate; 501, material sliding groove; 6, blocking member; 6101, U-shaped buckle plate; 6102, long strip hole; 6103, floating piece; 6104, retaining tongue; 6105, adjusting screw; 6201, fixed sleeve; 6202, floating tongue; 6203, C-shaped clamp; 6204, connecting rod; 6205, rack; 6206, shaft rod; 6207, rotating handle; 6208, gear; 7, connection module. Specific embodiments

[0030] The following further illustrates the present utility model in conjunction with embodiments, and the purpose is only to better understand the content of the present utility model. Therefore, the examples given do not limit the protection scope of the present utility model.

[0031] See Figures 1 to 10 , the milk stick sorting device provided by the present utility model includes

[0032] Frame 1, including four columns, and the four columns are connected by cross beams;

[0033] Slag bin 2, installed on the top of frame 1, including slag receiving plate 202 and side baffle 201, and one end of slag receiving plate 202 is the slag outlet;

[0034] Material sliding plate, composed of material receiving plate 3, chute plate 4 and discharging plate 5. Material receiving plate 3 is fixed at the upper end of chute plate 4, and thick slag holes are arranged horizontally and vertically on its plate surface; chute plate 4 is provided with a number of chutes, the width of the chutes is adapted to the diameter of the milk stick, and fine slag holes 402 are evenly arranged in the chutes; discharging plate 5 is installed at the lower end of chute plate 4, and it is provided with a number of material sliding grooves 501;

[0035] The vibration motor is installed at the bottom of the slag bin 2 and is used to drive the slag bin 2 and the material slide plate to vibrate.

[0036] The fried milk strips are unloaded in batches onto the receiving plate 3 through the unloading hopper, and the small and unqualified milk blocks fall under the screen and are collected by the residue bin 2; the fried milk strips are moved to the material slide plate by vibration, and the material slide plate has through holes evenly distributed on it. In essence, it is a screen plate with concave and convex textures. Since the chute can only accommodate fried milk strips along the slot holes, the fried milk strips are adjusted to follow the chute texture as the vibration occurs; in the process of the fried milk strips moving down the chute, the floating oil residue on the surface falls under the screen to avoid siltation in the trough causing blockage of the fried milk strips.

[0037] Usually, the sieve plate is made of a whole plate, so the equipment is purchased according to the production volume. The production of the material bone plate does not have the function of expansion or contraction. Therefore, if you want to increase the production volume, you can only replace a larger equipment. When you reduce the production, the surplus chute plate 4 will only adhere to more oil and produce more dirt. For this reason, the further improvement of the utility model is: the chute plate 4 is composed of a plurality of groove group bars 401, and the cross section of the groove group bar 401 is a wavy curve. The left end of the groove group bar 401 overlaps with the right end of the adjacent groove group bar 401 and is fixed by a locking bolt 403. This embodiment enables the chute plate 4 to adjust the width according to production needs. The wavy curve can be a smooth arc curve or a square wavy line, which can be selected according to whether the fried milk strip produced is square or round.

[0038] As an option, the groove group bar 401 includes at least one trough 405, a secondary wave point 406 on the left side of the wave crest 404, and a secondary wave point 407 on the right side of the wave crest 404. Conventional corrugated plate connection only requires the waveform to be matched and then fixed, and does not pay attention to the position of the connection point. It is often the case that the overlapping seam 408 of two adjacent plates is at the bottom. When the fried milk cubes move in this chute, oil residue easily enters the overlapping seam 408 and cannot be cleaned during production. During deep cleaning, it can only be split to clean the residue, which poses a health hazard. This embodiment defines that the starting position of each groove group bar 401 is located at the peak wave position. After the adjacent groove group bars 401 are overlapped, the overlapping seams 408 are all downward, thereby preventing oil residue from entering, which greatly facilitates the cleaning of the groove group bar 401.

[0039] As an option, fine residue holes 402 are provided at the bottom and sides of the trough 405, and the sieve holes can promote the oil residue to fall.

[0040] As an option, the upper ends of the side walls on both sides of the chute are inclined toward the middle. This implementation makes it difficult for the milk bar on the upper side to fall into the corresponding milk bar after it falls into the chute. The upper milk bar can be supported by the upper end of the chute and cannot be completely pressed onto the lower milk bar, thereby avoiding the situation where the lower milk bar is pressed and deformed.

[0041] When the fried milk strips move onto the material slide plate, some of them fall directly into the chute, some of them fall on the wave crest 404 in a balanced manner and slide down along the wave crest 404, and some of them stick when leaving the oil pan and are not easy to enter the chute. In order to make the milk strips uniformly discharged, the utility model provides a blocking member 6 in the middle of the material slide plate, and the blocking member 6 is suspended on the upper side of the chute plate 4 to limit the height of the material flowing through the chute. Specifically, the utility model provides two structures of the blocking member 6.

[0042] Blocking member 6 embodiment 1: Blocking member 6 includes floating sheet 6103, U-shaped gusset plate 6101 and adjusting screw 6105. The two ends of U-shaped gusset plate 6101 are fixed to the two sides of the material slide plate, and its lower edge falls on the top of the chute. One side of the vertical plate is provided with a long hole 6102. The upper side of floating sheet 6103 is installed in U-shaped gusset plate 6101, and a threaded hole is provided at the position corresponding to the long hole 6102. The lower side of floating sheet 6103 is provided with a blocking tongue 6104 corresponding to the chute one by one, and the blocking tongue 6104 extends into the chute. The adjusting screw 6105 passes through the long hole 6102 and is threadedly connected to the threaded hole, and the inner end of the adjusting screw 6105 abuts against the vertical plate on the other side of the U-shaped gusset plate 6101. When operating this embodiment, due to the large length of U-shaped gusset plate 6101 and floating sheet 6103, it is necessary to adjust the adjusting screws 6105 at both ends to achieve complete lifting or lowering of the floating plate.

[0043] Blocking member 6 embodiment 2: The blocking member 6 comprises a fixed sleeve 6201, in which a plurality of floating tongues 6202 are interspersed, the lower edge of the fixed sleeve 6201 falls on the top of the chute, the lower end of the floating tongue 6202 extends into the chute, and the upper end of each floating tongue 6202 is connected to a connecting rod 6204, wherein two floating tongues 6202 are provided with racks 6205 on the sides, and two gears 6208 meshing with the racks 6205 are provided in the fixed sleeve 6201, and the two gears 6208 are mounted on a shaft 6206, and both ends of the shaft 6206 penetrate the fixed sleeve 6201 and are rotatably connected to the fixed sleeve 6201, and a rotating handle 6207 is mounted on one end of the shaft 6206. This embodiment can realize synchronous lifting and lowering control of all blocking tongues 6104 on one side, making adjustment more convenient.

[0044] The blocking member 6 stops the fried milk strips sliding horizontally along the wave crest 404, and the fried milk strips are tilted and fall into the chute through vibration and the movement of the blocking member 6, so that the lightly adhered fried milk strips are separated, and the heavily adhered fried milk strips are piled at the position of the blocking member 6 waiting to be taken out manually.

[0045] Optionally, the connecting rod 6204 is a round steel bar, and a C-shaped clip 6203 is fixed to the upper end of the tongue 6104. The C-shaped clip 6203 is clamped on the connecting rod 6204. This structure of the tongue 6104 is easy to install and is convenient for adjusting the number and spacing of the tongue 6104 in accordance with the width of the slide plate 4.

[0046] A connecting seat is fixedly connected to the side of the side baffle 201. A connecting module 7 is provided at the top of the column. The connecting seat is fixedly connected to the top of the connecting module 7, and the connecting module 7 is used to adjust the inclination of the material slide.

[0047] The beneficial effects of the present utility model are as follows:

[0048] 1) It can effectively solve the problem of manual sorting and placement, facilitate product packaging, and improve production efficiency; 2) The equipment can adjust the production capacity according to production needs to avoid waste; 3) Automatic breaking of connections and automatic picking of unqualified large pieces.

[0049] The above are only the preferred and feasible embodiments of the present utility model, and do not limit the scope of rights of the present utility model. Any equivalent changes made by using the content of the specification and drawings of the present utility model are included within the scope of rights of the present utility model.

Claims

1. A fried milk strip sorting device, characterized in that: including a frame (1), including four columns, and the four columns are connected by cross beams; a slag bin (2), installed on the top of the frame (1), including a slag receiving plate (202) and side baffles (201), and one end of the slag receiving plate (202) is a slag outlet; a material slide plate, composed of a material receiving plate (3), a chute plate (4) and a discharging plate (5), the material receiving plate (3) is fixed to the upper end of the chute plate (4), and thick slag holes are arranged horizontally and vertically on its plate surface; the chute plate (4) is provided with a plurality of chutes, the width of the chutes is adapted to the diameter of the fried milk strips, and fine slag holes (402) are evenly arranged in the chutes; the discharging plate (5) is installed at the lower end of the chute plate (4), and is provided with a plurality of material sliding grooves (501); a vibration motor, installed at the bottom of the slag bin (2), for driving the slag bin (2) and the material slide plate to vibrate.

2. The milk stick arranging device according to claim 1, wherein: The chute plate (4) is composed of a plurality of groove group strips (401), the cross section of the groove group strips (401) is a waveform curve, the left end of the groove group strip (401) overlaps with the right end of the adjacent groove group strip (401) and is fixed by a locking bolt (403).

3. The milk stick sorting device according to claim 2, wherein: The groove group strip (401) at least includes a wave valley (405), from the left end to the sub-wave point (406) on the left side of the wave peak (404), and from the right end to the sub-wave point (407) on the right side of the wave peak (404).

4. The milk stick frying and arranging device according to claim 2, wherein: Fine slag holes (402) are arranged at the bottom and side of the wave valley (405).

5. The milk stick sorting device according to claim 2, characterized in that: The upper ends of the side walls on both sides of the chute incline towards the middle.

6. The milk stick sorting device according to claim 1, wherein: A blocking member (6) is arranged in the middle of the material slide plate, and the blocking member (6) hangs above the chute plate (4) for restricting the height of the flowing material in the chute.

7. The milk stick sorting device according to claim 6, characterized in that: The blocking member (6) includes a floating piece (6103), a U-shaped buckle plate (6101) and an adjusting screw (6105), the two ends of the U-shaped buckle plate (6101) are fixed to both sides of the material slide plate, its lower edge is placed on the top of the chute plate (4), and a long strip hole (6102) is arranged on one of its vertical plates; the upper side of the floating piece (6103) is installed in the U-shaped buckle plate (6101), a threaded hole is arranged corresponding to the long strip hole (6102), a retaining tongue (6104) corresponding to the chute is arranged on the lower side of the floating piece (6103), and the retaining tongue (6104) extends into the chute; the adjusting screw (6105) passes through the long strip hole (6102) and is threadedly connected to the threaded hole, and the inner end of the adjusting screw (6105) abuts against the other vertical plate of the U-shaped buckle plate (6101).

8. The milk stick sorting device according to claim 6, wherein: The blocking member (6) includes a fixed sleeve (6201), a plurality of floating tongues (6202) are inserted in the fixed sleeve (6201), the lower edge of the fixed sleeve (6201) is placed on the top of the chute, the lower ends of the floating tongues (6202) extend into the chute, the upper ends of the floating tongues (6202) are connected to a connecting rod (6204), racks (6205) are arranged on the sides of two of the floating tongues (6202), two gears (6208) meshing with the racks (6205) are arranged in the fixed sleeve (6201), the two gears (6208) are installed on a shaft rod (6206), the two ends of the shaft rod (6206) penetrate through the fixed sleeve (6201) and are rotatably connected to the fixed sleeve (6201), and a rotating handle (6207) is installed at one end of the shaft rod (6206).

9. The milk stick frying and sorting device according to claim 8, characterized in that: The connecting rod (6204) is a round steel bar, and a C-shaped clamp (6203) is fixedly connected to the upper end of the retaining tongue (6104). The C-shaped clamp (6203) is clamped on the connecting rod (6204).