Oil-brushing structure for brushing oil on the conveyor steel belt during the production of rice noodle rolls
By designing the oil brushing structure of the oil storage box, rotating shaft, brush and scraper plate in the intestine machine, the problems of uneven oil coating and inefficient in the intestine machine are solved, uniform oil coating and excess oil recycling are achieved, and the safety and efficiency of food production are improved.
Patent Information
- Application Number
- CN202211255664.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-10-13
- Publication Date
- 2025-07-22
- Estimated Expiration
- 2042-10-13
AI Technical Summary
The existing rice noodle machine has uneven oiling and low oiling efficiency, resulting in food safety issues and low production efficiency.
A brushing structure including an oil storage box, a rotating shaft, a brush, a scraper plate and a slant plate was designed. The brush is driven to apply oil on the transmission steel belt through the rotating shaft, and the excess oil is scraped away by using the scraper plate. Combined with the design of the drive mechanism and the scraper plate, the uniform coating of the oil and the recovery of the excess oil is achieved.
The oil coating on the transmission steel belt is achieved more evenly, the oil coating efficiency is improved, the oil waste is reduced, and the safety and efficiency of food production is improved.
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Figure CN115530400B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of rice noodle roll machines, and more specifically, to an oiling structure for oiling a transmission steel belt during the production of rice noodle rolls. Background Art
[0002] A rice noodle roll machine is a stainless - steel machine for making rice noodle rolls; the machine has a unique automatic water - inlet system, is equipped with a low - power energy - saving fan, and adopts a direct - heating device, which is energy - efficient and can effectively reduce production costs. The oiling structure of the rice noodle roll machine can be used for multiple purposes. Besides producing pulled rice noodle rolls, it can also produce rice noodles, rice noodle sheets, etc.
[0003] Currently, the production status is that manual hand - cranking is used for steaming rice noodle rolls, and auxiliary materials such as green vegetables and egg liquid are added. The on - site working temperature is high, the labor intensity is large, and the steaming time for each time depends entirely on the operator's experience. If the experience is insufficient, food safety problems such as under - steaming may occur.
[0004] In recent years, although some semi - automatic rice noodle roll production equipment has emerged one after another, the production equipment faces problems such as uneven oiling and low oiling efficiency. Summary of the Invention
[0005] The purpose of the present invention is to provide an oiling structure for oiling a transmission steel belt during the production of rice noodle rolls, aiming to solve the problems of uneven oiling and low oiling efficiency in the existing technology for rice noodle roll machines.
[0006] The present invention is implemented as follows. The oiling structure for oiling a transmission steel belt during the production of rice noodle rolls includes an oil storage box and a transmission steel belt that rotates along the circumferential direction. The transmission steel belt is located above the oil storage box. The oil storage box has an oil cavity with an open top. A rotating shaft that rotates along the circumferential direction is provided in the oil cavity. A plurality of oil - adhering brushes are provided on the rotating shaft. The plurality of brushes are arranged in rows offset along the circumferential direction of the rotating shaft, and the plurality of brushes are in contact with the transmission steel belt. Oblique plates extending towards the transmission steel belt are provided on both sides of the oil storage box. The two oblique plates are arranged obliquely. Scraping plates are arranged on the side of the two oblique plates close to each other. The scraping plates are in contact with the transmission steel belt.
[0007] When the rotating shaft rotates in the oil cavity, the rotating shaft adheres the oil liquid in the oil cavity through the brushes. When the transmission steel belt rotates past directly above the rotating shaft, the brushes apply the oil liquid onto the transmission steel belt, and the scraping plates scrape off the excess oil liquid on the transmission steel belt.
[0008] Furthermore, the rotating shaft is connected to a driving mechanism, and the driving mechanism drives the rotating shaft to rotate along the circumferential direction.
[0009] Furthermore, the driving mechanism includes a driving shaft that rotates in a circular motion and a driving gear that rotates with the driving shaft; the rotating shaft has a connecting shaft at one end close to the driving motor, a driven gear is sleeved on the connecting shaft, and the driving gear and the driven gear are meshed with each other; when the driving gear rotates in a circular motion, the driven gear drives the rotating shaft to rotate along the circumferential direction.
[0010] Furthermore, mounting plates connected to the oil storage box are provided on adjacent sides of the two inclined plates, one of the mounting plates is connected to the driving mechanism, and a support rod is installed at the bottom of the driving mechanism.
[0011] Furthermore, two mutually symmetrical connecting members are provided on the mounting plate, and one end of the connecting member away from the mounting plate is in contact with the oil storage box.
[0012] Furthermore, the cross section of the connecting member is L-shaped, and the width of the connecting member is greater than the width of the driving gear and the driven gear.
[0013] Furthermore, the transmission steel belt is connected to a driving motor, and the driving motor drives the transmission steel belt to rotate along a circumferential direction.
[0014] Furthermore, the transmission steel belt has an oil brushing end surface coated with oil, and the oil brushing end surface is in contact with the oil scraper plate and the brush respectively.
[0015] Furthermore, the oil scraper plate is connected to the inclined plate via a plurality of fixing bolts, and the oil scraper plate is arranged close to the inclined plate.
[0016] Furthermore, both sides of the inclined plate are provided with enclosing plates extending toward the oil scraper plate, the enclosing plates are in contact with the oil scraper plate, a guide cavity with a top opening is provided between the oil scraper plate and the inclined plate, and the bottom of the guide cavity is arranged in a middle concave shape; an oil distribution roller rotating with the transmission steel belt is provided on the top of the oil scraper plate, and the oil distribution roller is in contact with the transmission steel belt;
[0017] The scraper plate is provided with a plurality of drainage holes connected to the oil chamber, and the plurality of drainage holes are arranged at intervals along the bottom of the scraper plate; the drainage holes are connected to the concave portion in the middle of the bottom of the guide chamber; the top of the inclined plate has a receiving section extending toward the transmission steel belt, and the top of the receiving section is arranged in a curved shape toward the guide chamber;
[0018] After the scraper plate scrapes off excess oil from the transmission steel belt through the oil-distributing roller, the oil flows along the scraper plate into the guide cavity or directly into the oil cavity; when the oil flows into the guide cavity, it flows along the concave middle part of the bottom of the guide cavity and flows into the oil cavity through the drainage hole, forming a reflux utilization.
[0019] Compared with the prior art, the oil brushing structure for brushing oil on the transmission steel belt during the production of rice noodle rolls provided by the present invention drives the brush to evenly apply oil to the rotating transmission steel belt through the rotation of the rotating shaft; utilizing the rotation of the transmission steel belt, the oil scraper plate passively applies the oil on the transmission steel belt more evenly and scrapes off excess oil, thereby solving the problems of uneven oiling and low oiling efficiency of the rice noodle roll machine. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] Figure 1 It is a three-dimensional schematic diagram of an oiling structure for oiling a transmission steel belt in the production of rice noodle rolls provided by the present invention;
[0021] Figure 2 The present invention provides Figure 1 A is an enlarged schematic diagram;
[0022] Figure 3 It is a schematic diagram of the connection structure between the driving gear and the driven gear provided by the present invention;
[0023] Figure 4 It is a cross-sectional schematic diagram of the oil tank provided by the present invention.
[0024] In the figure: oil storage box 100, transmission steel belt 200, oil chamber 300, rotating shaft 400, driving mechanism 500, mounting plate 600, support rod 700, connecting piece 800, inclined plate 101, oil scraper plate 102, guide chamber 103, oil balancing roller 104, drainage hole 105, receiving section 106, oil brushing end surface 201, brush 401, connecting shaft 402, driven gear 403, driving gear 501. DETAILED DESCRIPTION
[0025] In order to make the purpose, technical solution and advantages of the present invention more clearly understood, the present invention is further described in detail below in conjunction with the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present invention and are not intended to limit the present invention.
[0026] The implementation of the present invention is described in detail below in conjunction with specific embodiments.
[0027] The same or similar numbers in the drawings of this embodiment correspond to the same or similar parts; in the description of the present invention, it should be understood that if the terms "upper", "lower", "left", "right" and the like indicate directions or positional relationships based on the directions or positional relationships shown in the drawings, it is only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific direction, be constructed and operated in a specific direction. Therefore, the terms describing the positional relationship in the drawings are only used for illustrative purposes and cannot be understood as limitations on the present invention. For ordinary technicians in this field, the specific meanings of the above terms can be understood according to specific circumstances.
[0028] Reference Figures 1-4 As shown, it is a preferred embodiment provided by the present invention.
[0029] An oil-brushing structure for brushing oil on a transmission steel belt during the production of rice noodle rolls, including an oil storage box 100 and a transmission steel belt 200 that rotates along the circumferential direction. The transmission steel belt 200 is located above the oil storage box 100. The oil storage box 100 has an oil cavity 300 with an open top. A rotating shaft 400 that rotates along the circumferential direction is provided in the oil cavity 300. A plurality of brushes 401 for adhering oil are provided on the rotating shaft 400. The plurality of brushes 401 are arranged in a row and staggered along the circumferential direction of the rotating shaft 400. The plurality of brushes 401 are in contact with the transmission steel belt 200. Oblique plates 101 extending towards the transmission steel belt 200 are provided on both sides of the oil storage box 100. The two oblique plates 101 are arranged obliquely. Scraping plates 102 are arranged on one side of the two oblique plates 101 close to each other. The scraping plates 102 are in contact with the transmission steel belt 200;
[0030] When the rotating shaft 400 rotates in the oil cavity 300, the rotating shaft 400 adheres the oil in the oil cavity 300 through the brushes 401. When the transmission steel belt 200 rotates past directly above the rotating shaft 400, the brushes 401 apply the oil on the transmission steel belt 200, and the scraping plates 102 scrape off the excess oil on the transmission steel belt 200.
[0031] The above-provided oil-brushing structure for brushing oil on the transmission steel belt during the production of rice noodle rolls drives the brushes 401 to evenly apply the oil on the rotating and moving transmission steel belt 200 by the rotation of the rotating shaft 400; by using the rotation and movement of the transmission steel belt 200, the scraping plates 102 passively make the oil on the transmission steel belt 200 more evenly applied and scrape off the excess oil, solving the problems of uneven oil application and low oil application efficiency of the rice noodle roll machine.
[0032] In this embodiment, the rotating shaft 400 is connected to a driving mechanism 500, and the driving mechanism 500 drives the rotating shaft 400 to rotate along the circumferential direction; the driving mechanism 500 includes a driving shaft that rotates in a circle and a driving gear 501 that rotates with the driving shaft; one end of the rotating shaft 400 close to the driving motor has a connecting shaft 402, and a driven gear 403 is sleeved on the connecting shaft 402. The driving gear 501 meshes with the driven gear 403; when the driving gear 501 rotates in a circle, the driven gear 403 drives the rotating shaft 400 to rotate along the circumferential direction.
[0033] Through the mutual cooperation of the oil storage box 100, the brush 401, and the oil scraping plate 102, the driving mechanism 500 can drive the rotating shaft 400 to rotate. The driving mechanism 500 can precisely control requirements such as rotational speed by means of the cooperation between the driving gear 501 and the driven gear 403. Then, the brush 401 on the rotating shaft 400 dips into the oil in the oil cavity 300 and applies it to the transmission steel belt 200. At the same time, the oil scraping plate 102 can scrape and coat the oil layer on the transmission steel belt 200 evenly. When the oil storage box 100 needs to be cleaned, the rotating shaft 400, the driving gear 501, and the driven gear 403 can be detached from the oil storage box 100 at the same time, facilitating the cleaning of the oil storage box 100. The driving motor drives the driving gear 501 through the driving shaft. Therefore, the driving gear 501 can be detached from the driving shaft, and the driving motor does not need to be detached, preventing the driving motor from affecting its operation when detaching and pulling the wires.
[0034] Installation plates 600 connected to the oil storage box 100 are provided on both adjacent sides of the two inclined plates 101. One of the installation plates 600 is connected to the driving mechanism 500, and a support rod 700 is installed at the bottom of the driving mechanism 500. In this way, the oil storage box 100 can be better fixed on the rice noodle machine through the installation plate 600, and the support rod 700 provides a supporting force for the driving mechanism 500 and the oil storage box 100, thereby preventing the driving mechanism 500 and the oil storage box 100 from shaking randomly.
[0035] Two symmetrically arranged connecting pieces 800 are provided on the installation plate 600. The end of the connecting piece 800 away from the installation plate 600 abuts against the oil storage box 100. In this way, the installation plate 600 can be better installed and disassembled with the oil storage box 100 through the connecting piece 800.
[0036] The cross-section of the connecting piece 800 is L-shaped, and the width of the connecting piece 800 is greater than the widths of the driving gear 501 and the driven gear 403. In this way, space can be reserved for the driving gear 501 and the driven gear 403 through the connecting piece 800, enabling the driving gear 501 and the driven gear 403 to transmit power well.
[0037] In this embodiment, the transmission steel belt 200 is connected to a driving motor, and the driving motor drives the transmission steel belt 200 to rotate along the circumferential direction. The transmission steel belt 200 has a brush oil end face 201 for applying oil, and the brush oil end face 201 is in contact with the oil scraping plate 102 and the brush 401 respectively.
[0038] Driving the transmission steel belt 200 to rotate and move through the driving motor can better cooperate with the oil scraping plate 102 and the brush 401 to apply oil on the transmission steel belt 200.
[0039] The oil scraper plate 102 is connected to the inclined plate 101 by a plurality of fixing bolts, and the oil scraper plate 102 is arranged close to the inclined plate 101. In this way, the oil scraper plate 102 can be easily replaced by the fixing bolts, and then the oil scraper plate 102 can be easily cleaned regularly.
[0040] In this embodiment, both sides of the inclined plate 101 are provided with enclosing plates extending toward the oil scraper plate 102, the enclosing plates abut against the oil scraper plate 102, and a guide cavity 103 with a top opening is provided between the oil scraper plate 102 and the inclined plate 101, and the bottom of the guide cavity 103 is arranged in a middle concave shape; an oil balancing roller 104 rotating with the transmission steel belt 200 is provided on the top of the oil scraper plate 102, and the oil balancing roller 104 is in contact with the transmission steel belt 200;
[0041] The scraper plate 102 is provided with a plurality of drainage holes 105 connected to the oil chamber 300, and the plurality of drainage holes 105 are arranged at intervals along the bottom of the scraper plate 102; the drainage holes 105 are connected to the concave portion in the middle of the bottom of the guide chamber 103; the top of the inclined plate 101 has a receiving section 106 extending toward the transmission steel belt 200, and the top of the receiving section 106 is arranged in a curved shape toward the guide chamber 103;
[0042] After the scraper plate 102 scrapes off excess oil from the transmission steel belt 200 through the oil balancing roller 104, the oil flows along the scraper plate 102 into the guide cavity 103 or directly into the oil cavity 300; after the oil flows into the guide cavity 103, it flows along the concave middle part of the bottom of the guide cavity 103 and flows into the oil cavity 300 through the drainage hole 105, forming a reflux utilization.
[0043] The two sides of the inclined plate 101 and the oil scraper plate 102 are closed by the enclosing plate to form a guide cavity 103, so as to prevent the oil from leaking from the two sides of the inclined plate 101 and the oil scraper plate 102 and causing oil waste; the oil distribution roller 104 on the oil scraper plate 102 is used to passively apply the oil on the transmission steel belt 200, so that the oil is more evenly applied on the transmission steel belt 200, and then the excess oil is introduced into the guide cavity 103 through the oil scraper plate 102, and then the drainage hole 105 is concentratedly led out from the concave part in the middle of the bottom of the guide cavity 103 to flow into the oil cavity 300;
[0044] The inclined plate 101 utilizes the receiving section 106 at the top thereof to guide the dripping oil into the guide cavity 103. Through this process and structural arrangement, the oil on the transmission steel belt 200 can be evenly spread and the excess oil can be recovered to avoid waste and prevent the food from being too greasy.
[0045] The above are only preferred embodiments of the present invention and are not intended to limit the present invention. Any modifications, equivalent substitutions and improvements made within the spirit and principles of the present invention should be included in the protection scope of the present invention.
Claims
1. The oil-brushing structure for brushing oil on the transmission steel belt during the production of rice noodle rolls, characterized in that, It comprises an oil storage box and a transmission steel belt rotating along a circumferential direction, wherein the transmission steel belt is located above the oil storage box, wherein the oil storage box has an oil chamber with a top opening, wherein a rotating shaft rotating along a circumferential direction is provided in the oil chamber, wherein a plurality of brushes adhering to the oil are provided on the rotating shaft, wherein the plurality of brushes are arranged in rows and staggered around the circumference of the rotating shaft, and wherein the plurality of brushes are in contact with the transmission steel belt; both sides of the oil storage box are provided with inclined plates extending toward the transmission steel belt, wherein the two inclined plates are arranged in an inclined manner, wherein an oil scraper is arranged on one side of the two inclined plates close to each other, and wherein the oil scraper is in contact with the transmission steel belt; When the rotating shaft rotates in the oil chamber, the rotating shaft adheres the oil in the oil chamber through the brush. When the transmission steel belt rotates and passes directly above the rotating shaft, the brush smears the oil on the transmission steel belt, and the scraper scrapes off the excess oil on the transmission steel belt. The two sides of the inclined plate are provided with enclosing plates extending toward the oil scraper plate, the enclosing plates are in contact with the oil scraper plate, a guide cavity with a top opening is provided between the oil scraper plate and the inclined plate, and the bottom of the guide cavity is arranged in a middle concave shape; an oil distribution roller rotating with the transmission steel belt is provided on the top of the oil scraper plate, and the oil distribution roller is in contact with the transmission steel belt; The scraper plate is provided with a plurality of drainage holes connected to the oil chamber, and the plurality of drainage holes are arranged at intervals along the bottom of the scraper plate; the drainage holes are connected to the concave portion in the middle of the bottom of the guide chamber; the top of the inclined plate has a receiving section extending toward the transmission steel belt, and the top of the receiving section is arranged in a curved shape toward the guide chamber; After the scraper plate scrapes off excess oil from the transmission steel belt through the oil-distributing roller, the oil flows along the scraper plate into the guide cavity or directly into the oil cavity; when the oil flows into the guide cavity, it flows along the concave middle part of the bottom of the guide cavity and flows into the oil cavity through the drainage hole, forming a reflux utilization.
2. The oil-brushing structure for brushing oil on the transmission steel belt in the production of rice noodle rolls according to claim 1, wherein, The rotating shaft is connected to a driving mechanism, and the driving mechanism drives the rotating shaft to rotate along a circumferential direction.
3. The oil brushing structure for brushing oil on the transmission steel belt during the production of rice noodle rolls as described in claim 2, characterized in that, The driving mechanism comprises a driving shaft that rotates in a circular motion and a driving gear that rotates with the driving shaft; the end of the rotating shaft close to the driving motor has a connecting shaft, a driven gear is sleeved on the connecting shaft, and the driving gear and the driven gear are meshed with each other; When the driving gear rotates in a circular direction, the driven gear drives the rotating shaft to rotate along the circumferential direction.
4. The oil-brushing structure for brushing oil on the transmission steel belt during the production of rice noodle rolls as claimed in claim 3, wherein Mounting plates connected to the oil storage box are arranged on adjacent two sides of the two inclined plates, one of the mounting plates is connected to the driving mechanism, and a support rod is installed at the bottom of the driving mechanism.
5. The oil-brushing structure for brushing oil on the transmission steel belt in the production of rice noodle rolls according to claim 4, wherein, The mounting plate is provided with two mutually symmetrical connecting pieces, and one end of the connecting piece away from the mounting plate abuts against the oil storage box.
6. The oil-brushing structure for brushing oil on the transmission steel belt in the production of rice noodle rolls as described in claim 5, characterized in that, The cross section of the connecting member is L-shaped, and the width of the connecting member is greater than the widths of the driving gear and the driven gear.
7. The oil-brushing structure for brushing oil on the transmission steel belt during the production of rice noodle rolls as described in any one of claims 1 to 6, characterized in that, The transmission steel belt is connected to a driving motor, and the driving motor drives the transmission steel belt to rotate along a circumferential direction.
8. The oil brushing structure for brushing oil on the transmission steel belt during the production of rice noodle rolls according to any one of claims 1 to 6, characterized in that, The oil scraper plate is connected to the inclined plate through a plurality of fixing bolts.
Citation Information
Patent Citations
Elasticizer oiling device
CN107217347A
Strip steel surface oiling device
CN211275276U