Feeding device of nut product roasting machine

By designing a nut feeding device for the diversion cylinder and cleaning components, the problem of uneven feeding of nut fried dryers in the prior art is solved, and the uniform feeding of nuts is achieved in batches and efficient cleaning of nuts is achieved, and the drying effect and cleanliness are improved.

CN223200988UActive Publication Date: 2025-08-08浙江何字食品有限公司
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Patent Information

Application Number
CN202422562722.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-22
Publication Date
2025-08-08
Estimated Expiration
2034-10-22

AI Technical Summary

Technical Problem

The feeding device of the existing nut fried dryer cannot achieve uniform feeding of nuts in batches, resulting in poor fried drying effect.

Method used

A feeding device including a split cylinder, a drive assembly, a split plate, a cleaning assembly and a negative pressure fan was designed. The nuts were quantitatively controlled to enter the frying dryer through the split cylinder, and impurities were screened using the cleaning assembly. The negative pressure fan absorbed dust, so as to achieve uniform batch feeding and efficient cleaning of the nuts.

Benefits of technology

The nuts are evenly fed in batches in the frying dryer, which improves the frying drying effect, and effectively removes impurities and dust, reducing the labor intensity of users.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a feeding device of a nut product roasting machine, and belongs to the field of nuts, and the feeding device is characterized by comprising a base and a cleaning box, and further comprising a cleaning assembly mounted on the cleaning box; the feeding assembly is mounted on the cleaning box; the feeding assembly is mounted on the cleaning box; wherein the feeding assembly comprises a flow dividing barrel, a feeding hopper, a driving assembly, a first rotating shaft, a flow dividing plate and a feeding hole, the flow dividing barrel is installed on the cleaning box, the feeding hopper is installed on the cleaning box, the driving assembly is installed on the base, the first rotating shaft is installed on the driving assembly, the flow dividing plate is installed on the first rotating shaft, and the feeding hole is formed in the feeding hole. According to the nut stir-frying machine, nuts can be quantitatively fed, so that the nuts fed into the stir-frying machine by the feeding device can be uniformly stir-fried in batches.
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Description

Technical Field

[0001] The present application relates to the field of nuts, and in particular to a feeding device of a nut product frying and drying machine. Background Art

[0002] As people's living standards improve, most people will add nuts to their daily diet to ensure their nutritional balance. Nuts are the essence of plants, rich in nutrients, containing high levels of protein, oil, minerals, and vitamins, which are helpful for human growth and development, physical fitness, and disease prevention. During the processing of nuts, the nuts need to be transported to the inside of the dryer for processing.

[0003] The existing publication number is CN219253281 U, which discloses a feeding device for a nut roasting and drying machine, including a base plate, a box body installed on the top side of the base plate, a feed hopper provided at the middle position of the top of the box body, and a pushing assembly provided inside the box body. The pushing assembly includes a driving motor installed on the outer surface of the box body, a screen provided on one side of the inside of the box body, a limit slot opened on the upper part of the inside of the box body, and a fixing plate installed on one side of the top of the box body.

[0004] Although the above-mentioned feeding device can continuously scrape off the impurities accumulated on the screen during the rotation of the push plate to avoid clogging of the screen, it cannot feed the nuts quantitatively. The nuts fed into the dryer by the feeding device cannot be evenly transported in batches for dry-frying. Utility Model Content

[0005] The purpose of this application is to address the above-mentioned technical problems and provide a feeding device for a nut product frying and drying machine, which can feed nuts in a quantitative manner so that the nuts fed into the frying and drying machine by the feeding device can be fried and dried evenly in batches.

[0006] The present application provides a feeding device for a nut product roasting and drying machine, comprising a base, a cleaning box, and:

[0007] A cleaning component, the cleaning component being mounted on the cleaning box;

[0008] A feeding assembly, the feeding assembly being mounted on the cleaning box;

[0009] A feeding assembly, wherein the feeding assembly is mounted on the cleaning box;

[0010] Among them, the feeding assembly includes a diverter cylinder, a feed hopper, a driving assembly, a first rotating shaft, a diverter plate, and a feeding hole. The diverter cylinder is installed on the cleaning box, the feed hopper is installed on the cleaning box, the driving assembly is installed on the base, the first rotating shaft is installed on the driving assembly, the diverter plate is installed on the first rotating shaft, and the feeding hole is arranged on the cleaning box.

[0011] When nuts need to be fed into the roasting and drying machine in uniform batches for roasting and drying, the nuts are loaded from the feed hopper, and the nuts loaded into the diverter cylinder are blocked by the diverter plate on the right side of the diverter plate. The diverter cylinder is made of transparent material, and the stacking thickness of the nuts loaded into the diverter cylinder from the feed hopper can be observed to roughly judge the amount of nuts loaded. At this time, the driving component drives the first rotating shaft to rotate, and the rotation of the first rotating shaft drives the diverter plate to rotate. The rotation of the diverter plate drives the nuts to move until the diverter plate rotates 180° to sweep the nuts into the material hole. At this time, nuts can be added from the feed hopper and the above operations can be repeated to transport the nuts uniformly in batches. The feeding component can feed the nuts quantitatively, so that the nuts fed into the roasting and drying machine by the feeding device can be evenly transported in batches for roasting and drying.

[0012] Furthermore, the cleaning component includes:

[0013] a first cleaning chamber, the first cleaning chamber being disposed in the cleaning box;

[0014] The first screen is installed in the first cleaning cavity and is arranged in an arc shape.

[0015] The cleaning assembly includes a first cleaning chamber and a first screen. The first cleaning chamber is arranged in a cleaning box, and the first screen is installed in the first cleaning chamber. The first screen is arranged in an arc shape. After the nuts are quantitatively transported by the diverter cylinder and the flow is limited, the nuts enter the first cleaning chamber from the feed hole and fall on the first screen. At this time, the first screen will screen out smaller, inferior nuts and dust impurities, making the remaining nuts of better quality. The cleaning assembly reduces impurities in the nut pile.

[0016] Furthermore, the cleaning component also includes:

[0017] a second cleaning chamber, the second cleaning chamber being disposed on the base;

[0018] A negative pressure fan, the negative pressure fan being installed in the second cleaning chamber;

[0019] A guide screen plate installed in the second cleaning chamber;

[0020] A receiving assembly is installed in the second cleaning chamber.

[0021] When the nuts fall on the first screen, the negative pressure fan is started to work. The negative pressure fan will attract impurities and dust on the first screen, making it easier for the impurities and dust on the first screen to pass through the first screen. The guide mesh plate allows wind and air to pass through but blocks dust and impurities. When the dust and impurities pass through the first screen and fall on the guide mesh plate, the guide mesh plate is provided with a certain slope. The dust and impurities falling on the guide mesh plate will be affected by the slope of the guide mesh plate and fall into the receiving assembly provided at the lower end of the guide mesh plate. The negative pressure fan attracts dust and impurities, making it easier for the impurities and dust in the nuts to be separated from the nuts, so that the impurities in the nut pile are less and more tidy.

[0022] Furthermore, the receiving assembly includes:

[0023] A storage box, wherein the storage box is mounted on the base;

[0024] A second screen is installed in the receiving box.

[0025] The receiving assembly includes a receiving box and a second screen, the receiving box is installed on the base, and the second screen is installed in the receiving box. The second screen can sift through dust and impurities, so that the dust and impurities accumulate at the bottom of the receiving box, and smaller and inferior nuts are blocked on the second screen and wait for subsequent users to further screen. When the dust and impurities in the receiving box are saturated, the receiving box can be cleaned by removing the lower bottom plate of the base. The receiving box allows the dust and impurities cleaned from the nut pile to be uniformly received, making unified cleaning more convenient and efficient for users, and reducing the labor intensity of users.

[0026] Furthermore, the feeding assembly includes:

[0027] a second rotating shaft, the second rotating shaft being mounted in the first cleaning chamber;

[0028] A pusher plate, the pusher plate being mounted on the second rotating shaft;

[0029] A feeding cylinder, wherein the feeding cylinder is mounted on the cleaning box;

[0030] a first motor, wherein the first motor is mounted on the feeding barrel;

[0031] a screw shaft mounted on the output shaft of the first motor;

[0032] A spiral blade is mounted on the spiral shaft.

[0033] When the nuts fall on the first screen, the driving assembly drives the second rotating shaft to rotate, and the rotation of the second rotating shaft drives the push plate to rotate, and the push plate rotates counterclockwise around the axis of the second rotating shaft. When the push plate rotates, the nuts on the first screen are pushed into the feeding barrel. At this time, the first motor is driven to rotate to drive the spiral shaft to rotate, and the rotation of the spiral shaft drives the spiral blade to rotate. The rotation of the spiral blade drives the nuts in the feeding barrel to be transported upward. The feeding assembly makes the feeding device more convenient and efficient.

[0034] Furthermore, the driving assembly includes:

[0035] A driving frame, wherein the driving frame is mounted on the base;

[0036] a second motor mounted on the second rotating shaft;

[0037] a third rotating shaft, the third rotating shaft being mounted on the cleaning box;

[0038] a gear body, wherein two gear bodies are provided, one of which is mounted on the second rotating shaft and the other is mounted on the third rotating shaft;

[0039] a fourth rotating shaft, wherein the fourth rotating shaft is mounted on the driving frame;

[0040] a transmission wheel, wherein two transmission wheels are provided, one of which is mounted on the fourth rotating shaft, and the other is mounted on the third rotating shaft;

[0041] A transmission belt, which is used for transmission and is installed on two transmission wheels;

[0042] a first bevel gear, the first bevel gear being mounted on the fourth rotating shaft;

[0043] A second bevel gear is mounted on the first rotating shaft.

[0044] When the driving component is required to drive the first rotating shaft to drive the diverter plate to rotate, the second motor starts working, and the second motor starts working to drive the second rotating shaft to rotate. The gear bodies are provided with two, one of which is installed on the second rotating shaft and the other is installed on the third rotating shaft. The rotation of the second rotating shaft drives the gear installed on the second rotating shaft, and the two gear bodies are meshed. When the gear body installed on the second rotating shaft rotates, the gear body on the third rotating shaft is also driven to rotate. At this time, the gear body connected to the third rotating shaft drives the third rotating shaft to rotate, and the rotation of the third rotating shaft drives the transmission wheel on the third rotating shaft. The rotation of the first transmission wheel drives the second transmission wheel to rotate through the transmission of the transmission belt, and the rotation of the second transmission wheel drives the fourth rotating shaft to rotate. The rotation of the fourth rotating shaft drives the first bevel gear to rotate, and the first bevel gear and the second bevel gear are meshed to drive the second bevel gear to rotate. The rotation of the second bevel gear drives the first rotating shaft to rotate. The driving component makes the feeding device more automated.

[0045] The beneficial effects of this application are:

[0046] 1. The feeding component can feed the nuts quantitatively, so that the nuts fed into the roasting and drying machine by the feeding device can be evenly transported in batches to roast the nuts;

[0047] 2. After the nuts have been quantitatively transported by the diverter tube and have been limited in flow, the nuts enter the first cleaning chamber from the feed hole and fall onto the first screen. At this time, the first screen will screen out smaller, inferior nuts and dust impurities, making the remaining nuts of better quality. The cleaning assembly reduces impurities in the nut pile;

[0048] 3. The negative pressure fan attracts dust and impurities, making it easier to separate the impurities and dust from the nuts, so that the nut pile has fewer impurities and is neater. BRIEF DESCRIPTION OF THE DRAWINGS

[0049] Figure 1 It is a schematic diagram of the overall structure of this application;

[0050] Figure 2 It is a schematic diagram of the overall structure of this application;

[0051] Figure 3 It is a cross-sectional view of the overall structure of the present application;

[0052] Figure 4 This application Figure 2 A magnified view of part A;

[0053] The reference numerals in the figure are: 100, base; 200, cleaning box; 300, cleaning assembly; 310, first cleaning chamber; 320, first screen; 330, second cleaning chamber; 340, negative pressure fan; 350, guide screen; 400, feeding assembly; 410, diverter cylinder; 420, feed hopper; 430, driving assembly; 431, driving frame; 432, second motor; 433, third rotating shaft; 434, gear body; 435, first Four rotating shafts; 436, transmission wheel; 437, transmission belt; 438, first bevel gear; 439, second bevel gear; 440, first rotating shaft; 450, diverter plate; 460, receiving assembly; 461, receiving box; 462, second screen; 470, feed hole; 500, feeding assembly; 510, second rotating shaft; 520, push plate; 530, feeding barrel; 540, first motor; 550, spiral shaft; 560, spiral blade. DETAILED DESCRIPTION

[0054] The following will be combined with the accompanying drawings in the embodiments of the present application to clearly describe the technical solutions in the embodiments of the present application. Obviously, the embodiments described are part of the embodiments of the present application, not all of the embodiments. Based on the embodiments in the present application, all other embodiments obtained by ordinary technicians in this field are within the scope of protection of this application.

[0055] The terms "first," "second," and the like in the specification and claims of this application are used to distinguish similar objects, and are not used to describe a specific order or precedence. It should be understood that the terms used in this manner are interchangeable where appropriate, so that the embodiments of this application can be implemented in an order other than that illustrated or described herein, and that the objects distinguished by "first," "second," and the like are generally of the same type, and do not limit the number of objects; for example, the first object can be one or more. In addition, the term "and / or" in the specification and claims refers to at least one of the connected objects, and the character " / " generally indicates that the objects connected are in an "or" relationship.

[0056] The embodiments of the present application are described in detail below through specific embodiments and their application scenarios in conjunction with the accompanying drawings.

[0057] Example 1:

[0058] like Figure 1 、 Figure 2 、 Figure 3 As shown, the embodiment of the present application provides a feeding device for a nut product roasting and drying machine, including a base 100, a cleaning box 200, and further comprising:

[0059] A cleaning assembly 300, wherein the cleaning assembly 300 is mounted on the cleaning box 200;

[0060] A feeding assembly 400, wherein the feeding assembly 400 is mounted on the cleaning box 200;

[0061] A feeding assembly 500, wherein the feeding assembly 500 is mounted on the cleaning box 200;

[0062] Among them, the feeding assembly 400 includes a diverter cylinder 410, a feed hopper 420, a driving assembly 430, a first rotating shaft 440, a diverter plate 450, and a feeding hole 470. The diverter cylinder 410 is installed on the cleaning box 200, the feed hopper 420 is installed on the cleaning box 200, the driving assembly 430 is installed on the base 100, the first rotating shaft 440 is installed on the driving assembly 430, the diverter plate 450 is installed on the first rotating shaft 440, and the feeding hole 470 is set on the cleaning box 200.

[0063] When the nuts need to be fed into the roasting and drying machine in batches for roasting and drying, the nuts are loaded from the feed hopper 420, and the nuts loaded into the diverter cylinder 410 are blocked by the diverter plate 450 on the right side of the diverter plate 450. The diverter cylinder 410 is made of transparent material, and the stacking thickness of the nuts loaded into the diverter cylinder 410 from the feed hopper 420 can be observed to roughly judge the amount of nuts loaded. At this time, the driving component 430 drives the first rotating shaft 440 to rotate, and the rotation of the first rotating shaft 440 drives the diverter plate 450 to rotate. The rotation of the diverter plate 450 drives the nuts to move until the diverter plate 450 rotates 180° to sweep the nuts into the material hole 470. At this time, nuts can be added from the feed hopper 420 and the above operation is repeated to transport the nuts evenly in batches. The feeding component 400 can feed the nuts quantitatively, so that the nuts fed into the roasting and drying machine by the feeding device can be evenly transported in batches for roasting and drying.

[0064] Example 2:

[0065] like Figure 3 As shown, the embodiment of the present application provides a feeding device for a nut product roasting and drying machine. In addition to the above technical features, the cleaning component 300 includes:

[0066] A first cleaning chamber 310 , wherein the first cleaning chamber 310 is disposed in the cleaning box 200 ;

[0067] The first screen 320 is installed in the first cleaning chamber 310 and is configured in an arc shape.

[0068] The cleaning assembly 300 includes a first cleaning chamber 310 and a first screen 320. The first cleaning chamber 310 is arranged in the cleaning box 200, and the first screen 320 is installed in the first cleaning chamber 310. The first screen 320 is arranged in an arc shape. After the nuts are quantitatively transported by the diverter cylinder 410 and the flow is limited, the nuts enter the first cleaning chamber 310 from the feed hole 470 and fall on the first screen 320. At this time, the first screen 320 will screen out smaller, inferior nuts and dust impurities, making the remaining nuts of better quality. The cleaning assembly 300 reduces impurities in the nut pile.

[0069] Example 3:

[0070] like Figure 3 As shown, the embodiment of the present application provides a feeding device for a nut product roasting and drying machine. In addition to the above technical features, the cleaning component 300 also includes:

[0071] A second cleaning chamber 330 , wherein the second cleaning chamber 330 is provided on the base 100 ;

[0072] A negative pressure fan 340 is installed in the second cleaning chamber 330;

[0073] A guide screen 350 , wherein the guide screen 350 is installed in the second cleaning chamber 330 ;

[0074] The receiving assembly 460 is installed in the second cleaning chamber 330 .

[0075] When nuts fall on the first screen 320, the negative pressure fan 340 is started to work. The negative pressure fan 340 will attract impurities and dust on the first screen 320, making it easier for impurities and dust on the first screen 320 to pass through the first screen 320. The guide mesh plate 350 allows wind and air to pass through but blocks dust and impurities. When the dust and impurities pass through the first screen 320, they fall on the guide mesh plate 350. The guide mesh plate 350 is set with a certain slope. The dust and impurities falling on the guide mesh plate 350 will be affected by the slope of the guide mesh plate 350 and fall into the receiving assembly 460 set at the lower end of the guide mesh plate 350. The negative pressure fan 340 attracts dust and impurities, making it easier for impurities and dust in the nuts to be separated from the nuts, so that the impurities in the nut pile are less and more tidy.

[0076] Example 4:

[0077] like Figure 3 As shown, the embodiment of the present application provides a feeding device for a nut product roasting and drying machine. In addition to the above technical features, the receiving assembly 460 includes:

[0078] A storage box 461 , wherein the storage box 461 is mounted on the base 100 ;

[0079] The second screen 462 is installed in the receiving box 461 .

[0080] The receiving assembly 460 includes a receiving box 461 and a second screen 462. The receiving box 461 is installed on the base 100, and the second screen 462 is installed in the receiving box 461. The second screen 462 can sift through dust and impurities, so that the dust and impurities accumulate at the bottom of the receiving box 461, and smaller and inferior nuts are blocked on the second screen 462 waiting for further screening by subsequent users. When the dust and impurities contained in the receiving box 461 are saturated, the receiving box 461 can be cleaned by disassembling the lower bottom plate of the base 100. The receiving box 461 allows the dust and impurities cleaned from the nut pile to be uniformly contained, making it more convenient and efficient for users to clean them uniformly, thereby reducing the labor intensity of users.

[0081] Example 5:

[0082] like Figure 3 As shown, the embodiment of the present application provides a feeding device for a nut product roasting and drying machine. In addition to the above technical features, the feeding assembly 500 includes:

[0083] A second rotating shaft 510 , the second rotating shaft 510 being installed in the first cleaning chamber 310 ;

[0084] A push plate 520 , wherein the push plate 520 is mounted on the second rotating shaft 510 ;

[0085] A feeding cylinder 530 , wherein the feeding cylinder 530 is mounted on the cleaning box 200 ;

[0086] A first motor 540 , which is mounted on the feeding cylinder 530 ;

[0087] a screw shaft 550 , wherein the screw shaft 550 is mounted on the output shaft of the first motor 540 ;

[0088] The spiral blade 560 is installed on the spiral shaft 550 .

[0089] When the nuts fall onto the first screen 320, the driving assembly 430 drives the second rotating shaft 510 to rotate, and the rotation of the second rotating shaft 510 drives the push plate 520 to rotate, and the push plate 520 rotates counterclockwise around the axis of the second rotating shaft 510. When the push plate 520 rotates, the nuts on the first screen 320 are pushed into the feeding barrel 530. At this time, the first motor 540 is driven to rotate to drive the screw shaft 550 to rotate, and the rotation of the screw shaft 550 drives the spiral blade 560 to rotate. The rotation of the spiral blade 560 drives the nuts in the feeding barrel 530 to be transported upward. The feeding assembly 500 makes the feeding device more convenient and efficient.

[0090] Example 6:

[0091] like Figure 1 、 Figure 2 、 Figure 3 、 Figure 4 As shown, the embodiment of the present application provides a feeding device for a nut product roasting and drying machine. In addition to the above technical features, the driving assembly 430 includes:

[0092] A driving frame 431 , wherein the driving frame 431 is mounted on the base 100 ;

[0093] A second motor 432 , the second motor 432 being mounted on the second rotating shaft 510 ;

[0094] A third rotating shaft 433, wherein the third rotating shaft 433 is mounted on the cleaning box 200;

[0095] Gear 434 body, two gear 434 bodies are provided, one of which is mounted on the second rotating shaft 510 and the other is mounted on the third rotating shaft 433;

[0096] a fourth rotating shaft 435 , wherein the fourth rotating shaft 435 is mounted on the driving frame 431 ;

[0097] Transmission wheels 436 , wherein two transmission wheels 436 are provided, one transmission wheel 436 is mounted on the fourth rotating shaft 435 , and the other is mounted on the third rotating shaft 433 ;

[0098] A transmission belt 437 is installed on two transmission wheels 436 for transmission;

[0099] a first bevel gear 438434 , the first bevel gear 438434 being mounted on the fourth rotating shaft 435 ;

[0100] The second bevel gear 439434 is mounted on the first rotating shaft 440 .

[0101] When the driving component 430 is required to drive the first rotating shaft 440 to drive the diverter plate 450 to rotate, the second motor 432 starts to work, and the second motor 432 starts to work to drive the second rotating shaft 510 to rotate. The gear 434 body is provided with two, one of which is installed on the second rotating shaft 510, and the other is installed on the third rotating shaft 433. The second rotating shaft 510 rotates to drive the gear 434 installed on the second rotating shaft 510, and the two gear 434 bodies are meshed. When the gear 434 body installed on the second rotating shaft 510 rotates, the gear 434 body on the third rotating shaft 433 is also driven to rotate. At this time, the gear 434 connected to the third rotating shaft 433 is The main body drives the third rotating shaft 433 to rotate, and the rotation of the third rotating shaft 433 drives the transmission wheel 436 on the third rotating shaft, and the first transmission wheel 436 rotates through the transmission belt 437 to drive the second transmission wheel 436 to rotate, and the second transmission wheel 436 rotates to drive the fourth rotating shaft 435 to rotate, and the fourth rotating shaft 435 rotates to drive the first bevel gear 438434 to rotate, and the first bevel gear 438434 and the second bevel gear 439434 are engaged with each other to drive the second bevel gear 439434 to rotate, and the rotation of the second bevel gear 439434 drives the first rotating shaft 440 to rotate, and the driving component 430 makes the feeding device more automated.

[0102] It should be noted that, in this article, the terms "comprise", "include" or any other variants thereof are intended to cover non-exclusive inclusion, so that a process, method, article or device comprising a series of elements includes not only those elements, but also other elements not explicitly listed, or also includes elements inherent to such process, method, article or device. In the absence of further restrictions, an element defined by the statement "comprises a ..." does not exclude the presence of other identical elements in the process, method, article or device comprising the element. In addition, it should be noted that the scope of the methods and devices in the embodiments of the present application is not limited to performing functions in the order shown or discussed, and may also include performing functions in a substantially simultaneous manner or in the opposite order according to the functions involved. For example, the described method may be performed in an order different from that described, and various steps may also be added, omitted, or combined. In addition, the features described with reference to certain examples may be combined in other examples.

[0103] The embodiments of the present application are described above in conjunction with the accompanying drawings, but the present application is not limited to the above-mentioned specific implementation methods. The above-mentioned specific implementation methods are merely illustrative and not restrictive. Under the guidance of this application, ordinary technicians in this field can also make many forms without departing from the purpose of this application and the scope of protection of the claims, all of which are within the protection of this application.

Claims

1. A feeding device for a nut product frying and drying machine, comprising a base (100), a cleaning box (200), characterized in that , also includes: A cleaning assembly (300), the cleaning assembly (300) being mounted on the cleaning box (200); A feeding assembly (400), wherein the feeding assembly (400) is mounted on the cleaning box (200); A feeding assembly (500), wherein the feeding assembly (500) is mounted on the cleaning box (200); The feed assembly (400) includes a diverter tube (410), a feed hopper (420), a drive assembly (430), a first rotating shaft (440), a diverter plate (450), and a feed hole (470). The diverter tube (410) is mounted on a cleaning box (200), the feed hopper (420) is mounted on the cleaning box (200), the drive assembly (430) is mounted on a base (100), the first rotating shaft (440) is mounted on the drive assembly (430), the diverter plate (450) is mounted on the first rotating shaft (440), and the feed hole (470) is provided on the cleaning box (200).

2. The feeding device of the nut product frying and drying machine according to claim 1, characterized in that: The cleaning assembly (300) comprises: a first cleaning chamber (310), wherein the first cleaning chamber (310) is disposed in the cleaning box (200); A first screen (320), wherein the first screen (320) is installed in the first cleaning chamber (310), and the first screen (320) is configured to be in an arc shape.

3. The feeding device of the nut product frying and drying machine according to claim 2, characterized in that: The cleaning component (300) further comprises: a second cleaning chamber (330), wherein the second cleaning chamber (330) is disposed on the base (100); a negative pressure fan (340), the negative pressure fan (340) being installed in the second cleaning chamber (330); a guide screen plate (350), wherein the guide screen plate (350) is installed in the second cleaning chamber (330); A receiving assembly (460) is installed in the second cleaning chamber (330).

4. The feeding device of the nut product frying and drying machine according to claim 3, characterized in that: The receiving assembly (460) includes: A storage box (461), wherein the storage box (461) is mounted on the base (100); A second screen (462), wherein the second screen (462) is installed in the receiving box (461).

5. The feeding device of the nut product frying and drying machine according to claim 4, characterized in that: The feeding assembly (500) comprises: a second rotating shaft (510), the second rotating shaft (510) being installed in the first cleaning chamber (310); A push plate (520), wherein the push plate (520) is mounted on the second rotating shaft (510); A feeding cylinder (530), wherein the feeding cylinder (530) is mounted on the cleaning box (200); A first motor (540), wherein the first motor (540) is mounted on the feeding cylinder (530); a screw shaft (550), the screw shaft (550) being mounted on an output shaft of the first motor (540); A spiral blade (560) is installed on the spiral shaft (550).

6. The feeding device of the nut product frying and drying machine according to claim 5, characterized in that: The drive assembly (430) includes: A driving frame (431), wherein the driving frame (431) is mounted on the base (100); a second motor (432), the second motor (432) being mounted on the second rotating shaft (510); a third rotating shaft (433), the third rotating shaft (433) being mounted on the cleaning box (200); A gear body (434), wherein two gear bodies (434) are provided, one of which is mounted on the second rotating shaft (510) and the other is mounted on the third rotating shaft (433); a fourth rotating shaft (435), wherein the fourth rotating shaft (435) is mounted on the driving frame (431); A transmission wheel (436), wherein two transmission wheels (436) are provided, wherein one transmission wheel (436) is mounted on the fourth rotating shaft (435), and the other transmission wheel (436) is mounted on the third rotating shaft (433); A transmission belt (437), the transmission belt (437) is used for transmission and is installed on two transmission wheels (436); a first bevel gear (438), the first bevel gear (438) being mounted on the fourth rotating shaft (435); A second bevel gear (439), wherein the second bevel gear (439) is mounted on the first rotating shaft (440).

Citation Information

Patent Citations

  • Feeding device for nut roasting machine

    CN219253281U