Deoiling mechanism for making noodles
By designing a deoiling mechanism, the deoiling chain conveying device and deoiling power mechanism are used to achieve automatic deoiling of the dough cake, solving the problem of low manual deoiling efficiency and achieving efficient and automated production of large-scale dough cakes.
Patent Information
- Application Number
- CN202422222086.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-10
- Publication Date
- 2025-07-22
- Estimated Expiration
- 2034-09-10
AI Technical Summary
In the prior art, the deoeating process of the dough cake relies on manual operation, resulting in large workload, low efficiency and is not suitable for large-scale production.
A deoiling mechanism is designed, including a deoiling chain conveyor and multiple deoiling modules. The deoiling power mechanism is used to drive the deoiling cylinder to rotate to generate centrifugal force for automatic deoiling. Through holes are provided on the deoiling cylinder to throw out oil and grease, and power transmission is ensured through synchronization belts and tightening components to achieve automatic deoiling.
Replace manual operation, significantly reduces the workload of operators and improves oil deoiling efficiency. It is suitable for the automated production of large-scale dough cakes, reduces operator fatigue, and improves overall processing efficiency.
Smart Images

Figure CN223128290U_ABST
Abstract
Description
Technical Field:
[0001] The utility model relates to the technical field of noodle deoiling, in particular to a deoiling mechanism for making noodles. Background Art:
[0002] As one of the staple foods in people's daily life, in order to be able to eat noodles conveniently and quickly at any time and place, instant noodles, also known as instant noodles, instant noodles, etc. have emerged on the market. The noodles are made into noodle cakes through processes such as boiling, cooling, aging, frying, and deoiling in advance. When needed, the processed noodle cakes can be simply heated and then eaten.
[0003] In the prior art, when deoiling the noodle cakes, most of them are still deoiled manually, that is, the oil in the fried noodle cakes is thrown out manually. Not only is the workload of the operators large and they are prone to fatigue, but the overall efficiency is low, and it is not well applicable to the deoiling and production of a large number of noodle cakes. Summary of the Utility Model:
[0004] The purpose of the utility model is to provide a deoiling mechanism for making noodles, which can replace the manual method to realize automatic deoiling of noodle cakes. It can not only greatly reduce the workload of the operators and the operators are not prone to fatigue, but also greatly improve the deoiling efficiency and the overall processing efficiency of the noodle cakes, and is well applicable to the deoiling and production of a large number of noodle cakes.
[0005] To achieve the above purpose, the technical solution adopted by the utility model is: a deoiling mechanism for making noodles, including a deoiling chain conveying device and a plurality of deoiling modules arranged on the deoiling chain conveying device. The deoiling module includes a deoiling base arranged on the deoiling chain conveying device and at least one deoiling component. The deoiling component includes a deoiling cylinder rotatably connected to the deoiling base in the vertical direction and a deoiling power mechanism for driving the deoiling cylinder to rotate. A plurality of through holes are formed in the deoiling cylinder.
[0006] Further improvement of the above solution is that the deoiling component further includes a deoiling cover arranged on the deoiling base and covering the periphery of the deoiling cylinder.
[0007] Further improvement of the above solution is that the deoiling power mechanism includes a deoiling synchronous belt, a synchronous belt power module for driving the deoiling synchronous belt to rotate in the vertical direction, a deoiling rotating shaft rotatably connected to the lower part of the deoiling base in the vertical direction, and a driven synchronous belt wheel cooperating with the deoiling synchronous belt. The top of the deoiling rotating shaft is connected to the bottom of the deoiling cylinder, and the driven synchronous belt wheel is sleeved on the bottom of the deoiling rotating shaft.
[0008] A further improvement to the above solution is that the oil removal synchronous belt is a double-sided toothed synchronous belt. The synchronous belt power module includes a driving synchronous pulley for meshing with the inner side of the oil removal synchronous belt, a synchronous pulley power mechanism for driving the driving synchronous pulley to rotate, a driven synchronous pulley meshing with the outer side of the oil removal synchronous belt, and the output end of the synchronous pulley power mechanism is drivingly connected to the driving synchronous pulley.
[0009] A further improvement to the above solution is that the oil removal power mechanism further includes a pressing assembly. The pressing assembly includes a pressing frame and a pressing roller arranged on the pressing frame. The pressing roller presses against the inner side of the oil removal synchronous belt outward.
[0010] A further improvement to the above solution is that the pressing assembly further includes a main pressing frame, the pressing frame is floatingly connected to the main pressing frame in the front-back direction, and a compression spring is clamped between the main pressing frame and the pressing frame.
[0011] A further improvement to the above solution is that the oil removal synchronous belt successively includes a first power driving section, a first turning section, a second power driving section, and a second turning section. Each driven synchronous pulley meshes with the first power driving section or the second power driving section of the oil removal synchronous belt.
[0012] A further improvement to the above solution is that the oil removal synchronous belt is integrally flat and long. The length of the first power driving section is greater than the lengths of the first turning section and the second turning section, and the length of the second power driving section is greater than the lengths of the first turning section and the second turning section.
[0013] The beneficial effect of the present utility model lies in: An oil removal mechanism for making noodles provided by the present utility model includes an oil removal chain conveying device and a plurality of oil removal modules arranged on the oil removal chain conveying device. The oil removal module includes an oil removal base arranged on the oil removal chain conveying device and at least one oil removal component. The oil removal component includes an oil removal cylinder rotatably connected to the oil removal base in the vertical direction and an oil removal power mechanism for driving the oil removal cylinder to rotate. A plurality of through holes are formed in the oil removal cylinder.
[0014] The overall automation degree of the present utility model is relatively high. The dough cake to be deoiled is placed in the oil removal cylinder, and the oil removal power mechanism drives the oil removal cylinder to rotate to generate centrifugal force, thereby throwing out the oil in the dough cake located in the oil removal cylinder. The present utility model can replace the manual method to realize automatic oil removal of the oil cake, which can not only greatly reduce the workload of the operators and the operators are not easily fatigued, but also greatly improve the oil removal efficiency and the overall processing efficiency of the dough cake, and can be well applied to the oil removal and production of a large number of dough cakes. Description of the Drawings:
[0015] Figure 1 It is a structural schematic diagram of the present utility model.
[0016] Figure 2 This is a schematic structural diagram of the oil removal power mechanism of the present utility model.
[0017] Explanation of reference numerals in the drawings: Oil removal chain conveying device 51, oil removal module 52, oil removal base 521, oil removal assembly 522, oil removal cylinder 5221, oil removal cover 5222, oil removal power mechanism 53, oil removal synchronous belt 531, first power drive section 5311, first turning section 5312, second power drive section 5313, second turning section 5314, synchronous belt power module 532, active synchronous belt pulley 5321, synchronous belt pulley power mechanism 5322, oil removal rotating shaft 533, driven synchronous belt pulley 534, pressing component 535, pressing frame 5351, pressing roller 5352, pressing main frame 5353, compression spring 5354. Specific implementation manner:
[0018] The following further describes the present utility model with reference to the accompanying drawings. As Figure 1-2 shown, the present utility model includes an oil removal chain conveying device 51 and a plurality of oil removal modules 52 arranged on the oil removal chain conveying device 51. The oil removal module 52 includes an oil removal base 521 arranged on the oil removal chain conveying device 51 and at least one oil removal assembly 522. The oil removal assembly 522 includes an oil removal cylinder 5221 rotatably connected to the oil removal base 521 in the vertical direction and an oil removal power mechanism 53 for driving the oil removal cylinder 5221 to rotate. A plurality of through holes are formed in the oil removal cylinder 5221. The overall automation degree of the present utility model is relatively high. The dough to be deoiled is placed in the oil removal cylinder 5221, and the oil removal power mechanism 53 drives the oil removal cylinder 5221 to rotate and generate centrifugal force, thereby throwing out the oil in the dough located in the oil removal cylinder 5221. The present utility model can replace the manual method to realize automatic oil removal of oil cakes, which can not only greatly reduce the workload of operators and the operators are not easily fatigued, but also greatly improve the oil removal efficiency and the overall processing efficiency of the dough, and can be well applied to the oil removal and production of a large number of doughs.
[0019] The oil removal assembly 522 further includes an oil removal cover 5222 arranged on the oil removal base 521 and covering the periphery of the oil removal cylinder 5221. When the oil in the dough located in the oil removal cylinder 5221 is thrown out, the thrown oil will be intercepted by the oil removal cover 5222. By providing the oil removal cover 5222, it can prevent the oil from being thrown everywhere when the oil in the dough located in the oil removal cylinder 5221 is thrown out, and the practicability is stronger.
[0020] The oil removal power mechanism 53 includes an oil removal synchronous belt 531, a synchronous belt power module 532 for driving the oil removal synchronous belt 531 to rotate in the vertical direction, an oil removal rotating shaft 533 rotatably connected to the lower part of the oil removal base 521 in the vertical direction, and a driven synchronous belt pulley 534 engaged with the oil removal synchronous belt 531. The top of the oil removal rotating shaft 533 is connected to the bottom of the oil removal cylinder 5221, and the driven synchronous belt pulley 534 is sleeved on the bottom of the oil removal rotating shaft 533. Compared with separately arranging a motor for driving the corresponding oil removal cylinder 5221 to rotate at the bottom of each oil removal cylinder 5221, the overall structure is not only relatively complex but also costly. In this utility model, the synchronous belt power module 532 drives the oil removal synchronous belt 531 to rotate, and then the oil removal synchronous belt 531 drives the driven synchronous belt pulley 534 to rotate, so as to drive the oil removal cylinder 5221 to rotate and complete oil throwing.
[0021] The oil removal synchronous belt 531 is a double-sided toothed synchronous belt. The synchronous belt power module 532 includes a driving synchronous belt pulley 5321 engaged with the inner side of the oil removal synchronous belt 531 and a synchronous belt pulley power mechanism 5322 for driving the driving synchronous belt pulley 5321 to rotate. The driven synchronous belt pulley 534 is engaged with the outer side of the oil removal synchronous belt 531, and the output end of the synchronous belt pulley power mechanism 5322 is drivingly connected to the driving synchronous belt pulley 5321. By adopting the structure where the driving synchronous belt pulley 5321 and the driven synchronous belt pulley 534 are respectively located on the inner and outer sides of the oil removal synchronous belt 531, the power transmission of the oil removal cylinder 5221 can be better realized, that is, the rotation of the oil removal cylinder 5221 can be better driven.
[0022] The oil removal power mechanism 53 further includes a tightening assembly 535. The tightening assembly 535 includes a tightening frame 5351 and a tightening roller 5352 arranged on the tightening frame 5351. The tightening roller 5352 abuts against the inner side of the oil removal synchronous belt 531 outward. By tightening the oil removal synchronous belt 531 with the tightening roller 5352, the oil removal synchronous belt 531 can be closely attached to the driven synchronous belt pulley 534, thereby preventing the driven synchronous belt pulley 534 from slipping and ensuring that the oil removal synchronous belt 531 can better drive the driven synchronous belt pulley 534 to rotate and realize the rotation of the oil removal cylinder 5221.
[0023] The tightening assembly 535 further includes a main tightening frame 5353. The tightening frame 5351 is floatingly connected to the main tightening frame 5353 in the front-rear direction. A compression spring 5354 is clamped between the main tightening frame 5353 and the tightening frame 5351. It is not feasible for the oil removal synchronous belt 531 and the driven synchronous belt pulley 534 to be too tightly or too loosely attached. By providing a floating pre-tightening force through the compression spring 5354, the oil removal synchronous belt 531 and the driven synchronous belt pulley 534 can be better attached and power transmission can be realized.
[0024] The oil removal synchronous belt 531 sequentially includes a first power drive section 5311, a first turning section 5312, a second power drive section 5313, and a second turning section 5314. Each driven synchronous pulley 534 meshes with the first power drive section 5311 or the second power drive section 5313 of the oil removal synchronous belt 531. The oil removal synchronous belt 531 of the present utility model can respectively and simultaneously drive two groups of oil removal cylinders 5221 to rotate through the first power drive section 5311 and the second power drive section 5313, thereby realizing oil removal of the noodles cakes, and the overall structure is more compact and reasonable.
[0025] With the conveying of the oil removal chain conveying device 51 to the oil removal module 52, when the oil removal cylinder 5221 moves to the position where the oil removal synchronous belt 531 is provided, the oil removal synchronous belt 531 drives the oil removal cylinder 5221 to rotate and realizes oil removal. The oil removal synchronous belt 531 of the present utility model is overall flat and long. The length of the first power drive section 5311 is greater than the lengths of the first turning section 5312 and the second turning section 5314, and the length of the second power drive section 5313 is greater than the lengths of the first turning section 5312 and the second turning section 5314. It can not only drive more oil removal cylinders 5221 to rotate simultaneously, but also enable the oil removal cylinder 5221 to rotate for a sufficient time, so as to ensure that oil removal can be fully realized.
[0026] Working principle:
[0027] Put the noodles cake to be deoiled into the oil removal cylinder 5221, and drive the oil removal cylinder 5221 to rotate through the oil removal power mechanism 53 to generate centrifugal force, thereby throwing out the oil in the noodles cake located in the oil removal cylinder 5221. The present utility model can replace the manual method to realize automatic oil removal of the oil cake. It can not only greatly reduce the workload of the operator and the operator is not easily fatigued, but also greatly improve the oil removal efficiency and the overall processing efficiency of the noodles cake, and is well applicable to the oil removal and production of a large number of noodles cakes.
[0028] Certainly, the above description is only a preferred embodiment of the present utility model. Therefore, all equivalent changes or modifications made according to the structure, features, and principles described in the scope of the patent application of the present utility model are included in the scope of the patent application of the present utility model.
Claims
1. An oil removal mechanism for making noodles, characterized in that: It includes a deoiling chain conveyor device (51) and a plurality of deoiling modules (52) arranged on the deoiling chain conveyor device (51). The deoiling module (52) includes a deoiling base (521) arranged on the deoiling chain conveyor device (51) and at least one deoiling component (522). The deoiling component (522) includes a deoiling cylinder (5221) rotatably connected to the deoiling base (521) in the vertical direction and a deoiling power mechanism (53) for driving the deoiling cylinder (5221) to rotate. A plurality of through holes are formed in the deoiling cylinder (5221).
2. The defatting mechanism for making noodles according to claim 1, characterized in that: The deoiling component (522) further includes a deoiling cover (5222) arranged on the deoiling base (521) and covering the periphery of the deoiling cylinder (5221).
3. The defatting mechanism for making noodles according to claim 1, wherein: The deoiling power mechanism (53) includes a deoiling synchronous belt (531), a synchronous belt power module (532) for driving the deoiling synchronous belt (531) to rotate in the vertical direction, a deoiling rotating shaft (533) rotatably connected to the lower part of the deoiling base (521) in the vertical direction, and a driven synchronous belt pulley (534) cooperating with the deoiling synchronous belt (531). The top of the deoiling rotating shaft (533) is connected to the bottom of the deoiling cylinder (5221), and the driven synchronous belt pulley (534) is sleeved on the bottom of the deoiling rotating shaft (533).
4. The degreasing mechanism for making noodles according to claim 3, characterized in that: The deoiling synchronous belt (531) is a double-sided toothed synchronous belt. The synchronous belt power module (532) includes a driving synchronous belt pulley (5321) for meshing with the inner side of the deoiling synchronous belt (531) and a synchronous belt pulley power mechanism (5322) for driving the driving synchronous belt pulley (5321) to rotate. The driven synchronous belt pulley (534) meshes with the outer side of the deoiling synchronous belt (531), and the output end of the synchronous belt pulley power mechanism (5322) is drivingly connected to the driving synchronous belt pulley (5321).
5. A defatting mechanism for making noodles according to claim 4, characterized in that: The deoiling power mechanism (53) further includes a pressing component (535). The pressing component (535) includes a pressing frame (5351) and a pressing roller (5352) arranged on the pressing frame (5351). The pressing roller (5352) presses against the inner side of the deoiling synchronous belt (531) outwardly.
6. The defatting mechanism for making noodles according to claim 5, characterized in that: The pressing component (535) further includes a main pressing frame (5353). The pressing frame (5351) is floatingly connected to the main pressing frame (5353) in the front-back direction. A compression spring (5354) is clamped between the main pressing frame (5353) and the pressing frame (5351).
7. The degreasing mechanism for making noodles according to claim 3, characterized in that: The deoiling synchronous belt (531) successively includes a first power driving section (5311), a first turning section (5312), a second power driving section (5313), and a second turning section (5314). Each driven synchronous belt pulley (534) meshes with the first power driving section (5311) or the second power driving section (5313) of the deoiling synchronous belt (531).
8. A defatting mechanism for making noodles according to claim 7, characterized in that: The oil-removing synchronous belt (531) is overall flat and long. The length of the first power drive section (5311) is greater than the lengths of the first turning section (5312) and the second turning section (5314), and the length of the second power drive section (5313) is greater than the lengths of the first turning section (5312) and the second turning section (5314).