Oat granulating and curing equipment
By designing an oat grinding and maturing equipment including an oat grinding mechanism and a baking mechanism, the problem of insufficient equipment in the prior art is solved, and the simplification of the oat grinding and maturing process and the improvement of efficiency are achieved.
Patent Information
- Application Number
- CN202421931434.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-12
- Publication Date
- 2025-05-27
- Estimated Expiration
- 2034-08-12
AI Technical Summary
In the prior art, the equipment used in the oat granule maturation production process is not highly optimized and the equipment is not streamlined enough.
An oat grinding and maturation equipment including an oat grinding mechanism, an oat baking mechanism and a feedstock are designed. The oat granulation mechanism realizes the pelleting and discharge of oats through the rotary cutting structure and the blowing structure, and the oat baking mechanism realizes the baking of oats through an infrared heater.
The equipment simplifies the oat grinding and maturation process, eliminates woks, extruders and cutting equipment, and improves process efficiency and equipment simplification.
Smart Images

Figure CN222898155U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of oat processing equipment, and specifically relates to an oat granulation and ripening equipment. Background Art
[0002] In the production process of oat granulation and ripening, it is necessary to first stir-fry oats in a frying pan, then melt and ripen the oats through an extruder and extrude them into strips, and then use cutting equipment to cut the oats into grains. After the oats are granulated, finally, baking equipment is used to bake the oat grains.
[0003] Thus, it can be seen that in the prior art, in order to ripen oats, it is necessary to first stir-fry oats in a frying pan. After being stir-fried, in order to make the oats into strips, it is necessary to use an extruder to extrude the oats into strips. In order to make the oats into grains, it is necessary to use cutting equipment to cut the oats into grains. Finally, it is also necessary to use baking equipment to bake the oat grains. Therefore, in the production process of oat granulation and ripening, more equipment is required.
[0004] Therefore, in the prior art, the optimization degree of the equipment used in the production process of oat granulation and ripening is not high, and the equipment is not concise enough.
[0005] For example, the Chinese utility model patent with the publication number CN209498539U discloses an oat granulation and ripening device, which includes a feeding and stirring mechanism for pouring stir-fried oats. It includes a housing with a feeding port at the upper part and a discharging port at the lower part. A stirring shaft is arranged in the housing, and there is a rubber sleeve on the stirring shaft, and a U-shaped collision ring is arranged on the rubber sleeve; an extrusion and strip-forming mechanism, which is an extruder with an inlet end connected to the discharging port; a chopping mechanism, which is arranged at the outlet end of the extruder and is used to cut the oat strips that have been extruded, melted and formed into strips by the extruder into grains. The chopping mechanism includes a rotatable cutter. There are three stirring shafts and the connection lines between the central axes are triangular. The U-shaped collision rings are arranged in multiple rows on the rubber sleeve, and each row of U-shaped collision rings is evenly arranged along the axial direction of the stirring shaft.
[0006] Moreover, the above patent records in paragraph
[0027] of the specification as follows: "Because the oat grains have been stir-fried beforehand and have a certain degree of adhesion", thus it can be seen that before the oats enter this device, the oats are first stir-fried in a frying pan, and then the stir-fried oats are put into this device. And, it can be clearly seen from the specification and drawings of this patent that this device uses more equipment and the production process is relatively complex. Therefore, the production equipment and process are not concise enough.
[0007] Based on this, a kind of oat granulation and ripening equipment is proposed now. Summary of the Invention
[0008] (I) Technical Problems to be Solved
[0009] In view of the deficiencies of the prior art, the present utility model provides an oat granulation and ripening device to solve the problems raised in the background art: the optimization degree of the devices used in the oat granulation and ripening production process in the prior art is not high, and the devices are not concise enough.
[0010] (2) Technical solution
[0011] To achieve the above object, the present utility model provides the following technical solution:
[0012] An oat granulation and ripening device, comprising:
[0013] An oat granulation mechanism, which includes a cylinder body, a rotary cutting structure installed in the cylinder body and capable of cutting oats into grains, a motor installed on the cylinder body and connected to the rotary cutting structure, and a blowing structure installed on the cylinder body and capable of accelerating the discharge of the granulated oats;
[0014] An oat baking mechanism, which is arranged on one side of the oat granulation mechanism. The oat baking mechanism includes a baking machine body, a heating element installed on the baking machine body, and a receiving element detachably installed in the baking machine body; and
[0015] A feeding member, one end of which is connected to the oat granulation mechanism and the other end of which is connected to the oat baking mechanism.
[0016] Preferably, one side of the top of the cylinder body has a feeding port, and one side of the bottom of the side wall of the cylinder body has a discharging port.
[0017] Preferably, the rotary cutting structure includes a main shaft, the main shaft is arranged in the inner cavity of the cylinder body, a plurality of cutting knives are fixedly installed on the side wall of the main shaft, the plurality of cutting knives are distributed from top to bottom on the main shaft, and the plurality of cutting knives are circumferentially distributed on the main shaft;
[0018] A shaft sleeve is fixedly installed at the center of the bottom of the inner cavity of the cylinder body, and one end of the bottom of the main shaft is rotatably installed in the shaft sleeve;
[0019] The motor is fixedly installed at the center of the top of the cylinder body, and the output shaft of the motor penetrates downward through the top of the cylinder body and extends into the inner cavity of the cylinder body;
[0020] One end of the top of the main shaft is fixedly connected to the end of the output shaft of the motor.
[0021] Preferably, the blowing structure includes a blower, the blower is fixedly installed on the top of the cylinder body, an air duct is communicated with the air outlet end of the blower, and one end of the air duct far away from the blower penetrates downward through the top of the cylinder body and extends into the inner cavity of the cylinder body.
[0022] Preferably, the outer wall of the end of the air duct away from the fan is tangent to the inner cavity side wall of the cylinder body.
[0023] Preferably, the baking machine body includes a base and a housing fixedly installed on the base;
[0024] The feeding member is a feeding pipe. One end of the feeding pipe is inserted and installed in the inner cavity of the discharge port, and the end of the feeding pipe away from the discharge port penetrates through one side wall of the housing and extends into the inner cavity of the housing;
[0025] The heating member is an infrared radiation heater, and the infrared radiation heater is embedded in the top of the housing;
[0026] A through groove is formed at the bottom of the side wall of the housing away from the cylinder body;
[0027] The accommodating member is a dressing tray. The dressing tray is inserted and installed in the inner cavity of the housing through the through groove and can be pulled outwards through the through groove.
[0028] Preferably, the side of the dressing tray facing the cylinder body is open.
[0029] Preferably, a limiting plate is fixedly installed at the top of the outer wall of the side of the dressing tray away from the cylinder body. When the dressing tray is inserted and installed in the inner cavity of the housing, the inner side wall of the limiting plate can be abutted against the outer side wall of the housing;
[0030] A return-shaped pull rod is fixedly installed on the side wall of the dressing tray on the side where the limiting plate is located.
[0031] Preferably, when the infrared radiation heater is heating, a baking chamber can be formed in the inner cavity of the housing.
[0032] Preferably, explosion-proof heat-resistant glass windows are embedded on the opposite side walls of the housing.
[0033] Beneficial effects:
[0034] The utility model provides an oat granulation and ripening device, which has the following beneficial effects:
[0035] First, in the utility model, after oats enter the cylinder body of the oat granulation mechanism, under the driving action of the motor, the rotary cutting structure can rotate at a high speed in the inner cavity of the cylinder body. Under the high-speed rotation of the rotary cutting structure, the oats can be cut into grains. When the oats are cut into grains, under the action of the centrifugal force of high-speed rotation, the oat grains can flow outwards from the oat granulation mechanism. Moreover, in order to better assist the oat grains to flow outwards, a blowing structure is arranged on the cylinder body. One end of the blowing structure extends into the inner cavity of the cylinder body. When the blowing structure works, the air flow generated in the blowing structure can flow from top to bottom, and during the flowing process, the oat grains in the cylinder body will be carried outwards;
[0036] The oat grains flowing out of the oat granulating mechanism will enter the oat baking mechanism through the feeding part for baking. Specifically, when the oat grains enter the baking machine body of the oat baking mechanism, the oat grains will be on the accommodating part. At the same time, under the heating and baking action of the heating part, the oat grains on the accommodating part can be heated and baked to make them cooked;
[0037] Therefore, it is not necessary to fry the oats before using this equipment. The oats can be directly put into this equipment. After streamlining and optimization, this equipment eliminates the redundant parts in the existing equipment, making the process of oat granulation and cooking simpler and more efficient.
[0038] Second, in the present utility model, the output shaft of the motor can drive the rotation of the main shaft. When the main shaft rotates, it can drive a plurality of cutting knives, so that the plurality of cutting knives rotate at high speed in the inner cavity of the cylinder, and then complete the cutting of oats, so that the oats can be formed into grains.
[0039] Third, in the present utility model, when the fan works, it can eject high-pressure air flow through the air outlet end. This high-pressure air flow will enter the inner cavity of the cylinder through the air duct. And when this high-pressure air flow enters the inner cavity of the cylinder, it flows from top to bottom. Therefore, in this process, the oat grains can be carried downward.
[0040] Fourth, in the present utility model, the outer wall of the end of the air duct far from the fan is tangent to the inner cavity side wall of the cylinder. Due to their tangency, the high-pressure air flow ejected from the air duct will flow downward along the inner cavity side wall of the cylinder in a spiral form. And when the spiral air flow flows from top to bottom, it can better carry the oat grains outward.
[0041] Fifth, in the present utility model, the oat grains flowing out of the oat granulating mechanism can flow into the inner cavity of the housing through the discharge port and the feed pipe. When the oat grains enter the inner cavity of the housing, the oat grains will fall on the loading tray. When the infrared radiation heater is heating and baking, the oat grains on the loading tray can be heated and baked, and then cooked;
[0042] After the oat grains are cooked, by pulling out the loading tray outward, it is convenient for the staff to take the materials.
[0043] Sixth, in the present utility model, the staff can observe the baking state of the oat grains in the housing through the explosion-proof heat-resistant glass window outside. Description of the Drawings
[0044] Figure 1 Is a three-dimensional schematic diagram of a partial section of the present utility model;
[0045] Figure 2 Is a three-dimensional schematic diagram of the present utility model;
[0046] Figure 3 It is a three-dimensional schematic view of the upward view of the partial section of the present utility model;
[0047] Figure 4 It is a structural schematic view of the upward view of the partial section of the present utility model;
[0048] Figure 5 It is a three-dimensional schematic view when the loading tray of the present utility model is pulled outwards.
[0049] In the figure: 10, cylinder body; 101, feed inlet; 102, discharge outlet; 20, motor; 30, main shaft; 40, cutting knife; 50, shaft sleeve; 60, blower; 70, air duct; 80, material conveying pipe; 90, base; 100, housing; 1001, through groove; 110, infrared radiation heater; 120, loading tray; 130, limiting plate; 140, return-shaped pull rod; 150, explosion-proof heat-resistant glass window. Specific embodiments
[0050] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present utility model.
[0051] Embodiment 1
[0052] As Figures 1-5 shown, the present utility model provides a technical solution:
[0053] An oat granulation and ripening device, comprising:
[0054] An oat granulation mechanism, which includes a cylinder body 10, a rotary cutting structure installed in the cylinder body 10 and capable of cutting oats into grains, a motor 20 installed on the cylinder body 10 and connected to the rotary cutting structure, and a blowing structure installed on the cylinder body 10 and capable of accelerating the discharge of the granulated oats;
[0055] After the oats enter the cylinder 10 of the oat granulating mechanism, driven by the motor 20, the rotary cutting structure can rotate at high speed in the inner cavity of the cylinder 10. Under the high-speed rotation of the rotary cutting structure, the oats can be cut into grains. After the oats are cut into grains, under the action of the centrifugal force of high-speed rotation, the oat grains can flow out of the oat granulating mechanism. Moreover, in order to better assist the outward flow of the oat grains, a blowing structure is provided on the cylinder 10. One end of the blowing structure extends into the inner cavity of the cylinder 10. When the blowing structure works, the air flow generated in the blowing structure can flow from top to bottom, and during the flowing process, it will carry the oat grains in the cylinder 10 outwards.
[0056] The oat baking mechanism is arranged on one side of the oat granulating mechanism. The oat baking mechanism includes a baking body, a heating element installed on the baking body, and a receiving member detachably installed in the baking body; and
[0057] The feeding member has one end connected to the oat granulating mechanism and the other end connected to the oat baking mechanism.
[0058] The oat grains flowing out of the oat granulating mechanism will enter the oat baking mechanism through the feeding member for baking. Specifically, when the oat grains enter the baking body of the oat baking mechanism, the oat grains will be on the receiving member. At the same time, under the heating and baking action of the heating element, the oat grains on the receiving member can be heated and baked to make them cooked.
[0059] Embodiment 2
[0060] As Figures 1-2 shown, on the basis of Embodiment 1, the improvement is as follows:
[0061] Furthermore, one side at the top of the cylinder 10 has a feed inlet 101, and one side at the bottom of the side wall of the cylinder 10 has a discharge outlet 102.
[0062] In this embodiment, the feed inlet 101 is used for feeding oats, and the discharge outlet 102 is used for discharging oat grains.
[0063] Embodiment 3
[0064] As Figures 1-5 shown, on the basis of Embodiment 2, the improvement is as follows:
[0065] As Figure 1 、 Figure 3 shown, in order to optimize the rotary cutting structure, in this embodiment, furthermore, the rotary cutting structure includes a main shaft 30. The main shaft 30 is arranged in the inner cavity of the cylinder 10. A plurality of cutting knives 40 are fixedly installed on the side wall of the main shaft 30. The plurality of cutting knives 40 are distributed from top to bottom on the main shaft 30, and the plurality of cutting knives 40 are circumferentially distributed on the main shaft 30;
[0066] At the center of the bottom of the inner cavity of the cylinder body 10, a shaft sleeve 50 is fixedly installed, and the bottom end of the main shaft 30 is rotatably installed in the shaft sleeve 50;
[0067] The motor 20 is fixedly installed at the center of the top of the cylinder body 10, and the output shaft of the motor 20 penetrates downward through the top of the cylinder body 10 and extends into the inner cavity of the cylinder body 10;
[0068] The top end of the main shaft 30 is fixedly connected to the end of the output shaft of the motor 20.
[0069] The output shaft of the motor 20 can drive the rotation of the main shaft 30. When the main shaft 30 rotates, it can drive a plurality of cutting knives 40, so that the plurality of cutting knives 40 rotate at high speed in the inner cavity of the cylinder body 10, thereby completing the cutting of oats, so that the oats can be formed into grains.
[0070] Such as Figure 2 、 Figure 5 As shown, in order to optimize the blowing structure, in this embodiment, further, the blowing structure includes a blower 60. The blower 60 is fixedly installed on the top of the cylinder body 10, and the air outlet end of the blower 60 is communicated with an air duct 70. The end of the air duct 70 away from the blower 60 penetrates downward through the top of the cylinder body 10 and extends into the inner cavity of the cylinder body 10.
[0071] When the blower 60 works, it can eject high-pressure air flow through the air outlet end. The high-pressure air flow will enter the inner cavity of the cylinder body 10 through the air duct 70, and when the high-pressure air flow enters the inner cavity of the cylinder body 10, it flows from top to bottom. Therefore, during this process, the oat grains can be carried downward.
[0072] Such as Figure 4 As shown, further, the outer wall of the end of the air duct 70 away from the blower 60 is tangent to the inner cavity side wall of the cylinder body 10. Due to the tangency between the two, the high-pressure air flow ejected from the air duct 70 will flow downward along the inner cavity side wall of the cylinder body 10 in a spiral form. When the spiral air flow flows from top to bottom, it can better carry the oat grains outward.
[0073] Embodiment Four
[0074] Such as Figures 1-5 As shown, on the basis of Embodiment Two, an improvement is made:
[0075] Such as Figures 1-5 As shown, in order to optimize the structure of the baking body, in this embodiment, further, the baking body includes a base 90 and a housing 100 fixedly installed on the base 90;
[0076] The material conveying part is a material conveying pipe 80. One end of the material conveying pipe 80 is inserted and installed in the inner cavity of the discharge port 102, and the end of the material conveying pipe 80 far from the discharge port 102 penetrates through one side wall of the housing 100 and extends into the inner cavity of the housing 100;
[0077] The heating part is an infrared radiation heater 110, and the infrared radiation heater 110 is embedded in the top of the housing 100;
[0078] A through groove 1001 is formed at the bottom of the side wall of the housing 100 far from the cylinder 10;
[0079] The accommodating part is a holding tray 120. The holding tray 120 is inserted and installed in the inner cavity of the housing 100 through the through groove 1001, and can be pulled outwards through the through groove 1001.
[0080] The oat grains flowing out of the oat granulating mechanism can flow into the inner cavity of the housing 100 through the discharge port 102 and the material conveying pipe 80. When the oat grains enter the inner cavity of the housing 100, the oat grains will fall on the holding tray 120. When the infrared radiation heater 110 is heating and baking, the oat grains on the holding tray 120 can be heated and baked, so as to ripen them;
[0081] After the oat grains are ripened, by pulling the holding tray 120 outwards, it is convenient for the staff to take the materials.
[0082] As Figure 1 shown, further, the side of the holding tray 120 facing the cylinder 10 is open, which is convenient for the oat grains to fall into the holding tray 120.
[0083] As Figure 1 、 Figure 2 and Figure 5 shown, further, a limiting plate 130 is fixedly installed at the top of the outer wall of the side of the holding tray 120 far from the cylinder 10. When the holding tray 120 is inserted and installed in the inner cavity of the housing 100, the inner side wall of the limiting plate 130 can be abutted against the outer side wall of the housing 100, so as to realize the limitation of the holding tray 120;
[0084] A loop-shaped pull rod 140 is fixedly installed on one side wall of the holding tray 120 located at the limiting plate 130. By pulling the loop-shaped pull rod 140, the holding tray 120 can be pulled outwards.
[0085] As Figure 1 shown, further, when the infrared radiation heater 110 is heating, the inner cavity of the housing 100 can form a baking chamber, and after the oat grains fall into the holding tray 120, they are in the baking chamber.
[0086] As Figure 2 、 Figure 5As shown in the figure, further, explosion-proof heat-resistant glass windows 150 are embedded on the opposite side walls of the housing 100, and the staff can observe the baking state of the oat grains in the housing through the explosion-proof heat-resistant glass windows 150 from the outside.
[0087] In summary, the working process of the present utility model is as follows:
[0088] As Figures 1-5 shown in the figure, after the oats enter the cylinder 10 of the oat granulating mechanism, driven by the motor 20, the rotary cutting structure can rotate at a high speed in the inner cavity of the cylinder 10. Under the high-speed rotation of the rotary cutting structure, the oats can be cut into grains. When the oats are cut into grains, under the action of the centrifugal force of high-speed rotation, the oat grains can flow out of the oat granulating mechanism. Moreover, in order to better assist the oat grains to flow out, a blowing structure is arranged on the cylinder 10. One end of the blowing structure extends into the inner cavity of the cylinder 10. When the blowing structure works, the air flow generated in the blowing structure can flow from top to bottom, and during the flowing process, it will carry the oat grains in the cylinder 10 outwards.
[0089] The oat grains flowing out of the oat granulating mechanism will enter the oat baking mechanism through the feeding part for baking. Specifically, when the oat grains enter the baking machine body of the oat baking mechanism, the oat grains will be on the accommodating part. At the same time, under the heating and baking action of the heating part, the oat grains on the accommodating part can be heated and baked to make them cooked.
[0090] Specifically, the output shaft of the motor 20 can drive the rotation of the main shaft 30. When the main shaft 30 rotates, it can drive a plurality of cutting knives 40 to rotate at a high speed in the inner cavity of the cylinder 10, thereby completing the cutting of the oats;
[0091] When the fan 60 works, it can eject high-pressure air flow through the air outlet end. The high-pressure air flow will enter the inner cavity of the cylinder 10 through the air duct 70. And when the high-pressure air flow enters the inner cavity of the cylinder 10, it flows from top to bottom. Therefore, during this process, the oat grains can be carried downward;
[0092] The oat grains flowing out of the oat granulating mechanism can flow into the inner cavity of the housing 100 through the discharge port 102 and the conveying pipe 80. When the oat grains enter the inner cavity of the housing 100, the oat grains will fall on the loading tray 120. When the infrared radiation heater 110 performs heating and baking, the oat grains on the loading tray 120 can be heated and baked, thereby making them cooked;
[0093] When the oat grains are cooked, by pulling the loading tray 120 outwards, it is convenient for the staff to take the materials.
[0094] Any of the above different embodiments can be combined with, replaced by, or used in combination with each other.
[0095] It should be noted that in this text, relational terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the term "comprising", "including" or any other variation thereof is intended to cover non-exclusive inclusion, so that a process, method, article or device comprising a series of elements not only includes those elements but also includes other elements not expressly listed, or also includes elements inherent to such process, method, article or device.
[0096] Although embodiments of the present invention have been shown and described, those of ordinary skill in the art can understand that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principle and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. An oat granulation and maturation device, characterized in that: include: An oat granulation mechanism comprises a barrel (10), a rotary cutting structure installed in the barrel (10) and capable of granulating the oats, a motor (20) installed on the barrel (10) and connected to the rotary cutting structure, and an air blowing structure installed on the barrel (10) and capable of accelerating the discharge of granulated oats; an oat roasting mechanism, which is arranged on one side of the oat granulating mechanism, and comprises a roasting body, a heating element installed on the roasting body, and a receiving element detachably installed in the roasting body; as well as A feeding member, one end of which is connected to the oat granulation mechanism, and the other end of which is connected to the oat baking mechanism.
2. The oat granulation and maturation equipment according to claim 1, characterized in that: The top side of the cylinder (10) is provided with a material inlet (101), and the bottom side of the side wall of the cylinder (10) is provided with a material outlet (102).
3. The oat granulation and maturation equipment according to claim 2, characterized in that: The rotary cutting structure comprises a main shaft (30), the main shaft (30) being arranged in the inner cavity of the cylinder (10), a plurality of cutting knives (40) being fixedly mounted on the side wall of the main shaft (30), the plurality of cutting knives (40) being distributed from top to bottom on the main shaft (30), and the plurality of cutting knives (40) being distributed circumferentially on the main shaft (30); A shaft sleeve (50) is fixedly mounted at the center of the bottom circle of the inner cavity of the cylinder (10), and one end of the bottom of the main shaft (30) is rotatably mounted in the shaft sleeve (50); The motor (20) is fixedly mounted at the top center of the cylinder (10), and the output shaft of the motor (20) passes downward through the top of the cylinder (10) and extends into the inner cavity of the cylinder (10); One end of the top of the main shaft (30) is fixedly connected to the end of the output shaft of the motor (20).
4. The oat granulation and maturation equipment according to claim 3, characterized in that: The air blowing structure comprises a fan (60), wherein the fan (60) is fixedly mounted on the top of the cylinder (10), and an air outlet end of the fan (60) is connected to an air duct (70), and an end of the air duct (70) away from the fan (60) passes downward through the top of the cylinder (10) and extends into the inner cavity of the cylinder (10).
5. The oat granulation and maturation equipment according to claim 4, characterized in that: The outer wall of the end of the air duct (70) away from the fan (60) is tangent to the inner cavity side wall of the cylinder (10).
6. The oat granulation and maturation equipment according to claim 2, characterized in that: The baking machine body comprises a base (90) and a shell (100) fixedly mounted on the base (90); The material conveying member is a material conveying pipe (80), one end of the material conveying pipe (80) is inserted and installed in the inner cavity of the material discharge port (102), and the end of the material conveying pipe (80) away from the material discharge port (102) penetrates a side wall of the shell (100) and extends into the inner cavity of the shell (100); The heating element is an infrared radiation heater (110), and the infrared radiation heater (110) is embedded in the top of the housing (100); A through groove (1001) is formed at the bottom of a side wall of the shell (100) away from the cylinder (10); The receiving member is a serving tray (120), and the serving tray (120) is inserted and installed in the inner cavity of the housing (100) through the through slot (1001), and can be pulled outward through the through slot (1001).
7. The oat granulation and maturation equipment according to claim 6, characterized in that: The side of the serving tray (120) facing the cylinder (10) is open.
8. The oat granulation and maturation equipment according to claim 7, characterized in that: A limiting plate (130) is fixedly mounted on the top of the outer wall of the containing plate (120) away from the cylinder (10), and when the containing plate (120) is inserted and installed in the inner cavity of the shell (100), the inner wall of the limiting plate (130) can abut against the outer wall of the shell (100); The serving tray (120) is fixedly provided with a return pull rod (140) on a side wall located on one side of the limiting plate (130).
9. The oat granulation and maturation equipment according to claim 6, characterized in that: When the infrared radiation heater (110) is heated, the inner cavity of the housing (100) can form a baking chamber.
10. The oat granulation and maturation equipment according to claim 9, characterized in that: Explosion-proof and heat-resistant glass windows (150) are embedded on opposite side walls of the housing (100).
Citation Information
Patent Citations
Oat granulating and curing device
CN209498539U