Intelligent raw material processing equipment for essence production

By designing an intelligent processing equipment for fragrance production, using technical means such as blower pipes, vibration strips and suction frames, the existing drying equipment has solved the problems of poor airflow circulation and inconvenient discharge in the lavender pile, and achieved uniform drying, decomposition and convenient discharge of lavender.

CN119958237AInactive Publication Date: 2025-05-09WEIYIWEIDE FOOD INGREDIENTS (JIANGXI) CO LTD
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Patent Information

Application Number
CN202510248797.5
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-04
Publication Date
2025-05-09
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

The existing drying equipment has poor airflow circulation inside the lavender pile, which affects the drying efficiency, and puts the gas conveyor deep into the lavender pile to affect the discharge, resulting in inconvenient packaging of the discharge.

Method used

An intelligent processing device including a processing compartment, a support frame, a blower, a filter, a vibration strip and a suction frame is designed. Blow out the hot air through the blower to dry, the vibrating strips cause impurities in the lavender to fall off, the suction frame draws water vapor and dust, and the filter and wrap strips are used to wrap and pack the lavender.

Benefits of technology

The uniform drying and decomposition of lavender is achieved, the convenience of discharge and packaging efficiency are improved, and the subsequent packaging and storage steps are simplified.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of essence processing, in particular to intelligent raw material processing equipment for essence production, which comprises a processing cabin, a blocking door and the like, the processing cabin is movably connected with a cabin door; an impurity discharging opening is formed in the processing cabin; a discharge hole is formed in the processing cabin; and a baffle door is movably connected to the discharge hole. According to the lavender drying device, hot air is blown out through the air blowing pipes to dry lavender, due to the fact that the air blowing pipes are evenly distributed in the long-strip-shaped lavender, the circulation effect of air flow in a lavender pile is effectively guaranteed, the uniform drying effect on the lavender can be effectively achieved, meanwhile, vibration is conducted in the lavender through the vibration strips, and the lavender drying effect is improved. The lavender is vibrated, so that particle impurities such as soil blocks and sand grains clamped in the lavender are shaken to fall off, the multiple vibration strips are evenly inserted into a lavender pile for vibration, it is avoided that vibration energy needs to be conducted upwards from the bottommost layer of the lavender pile, and the vibration effect on the lavender is effectively improved.
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Description

Technical Field

[0001] The present invention relates to the technical field of flavor processing, and in particular to a raw material intelligent processing device for flavor production. Background Art

[0002] Lavender is a commonly used raw material in the production of essences. In the processing of lavender, before it is harvested and stored and further processed, it is necessary to screen out the granular impurities such as soil and sand and their dust hidden in the lavender. Since the long strips of lavender just harvested contain dew, the granular impurities and dust have a greater adhesion to the lavender, which makes it more difficult to remove impurities from the lavender. In addition, lavender contains a lot of water and is prone to deterioration and rot, so it is also necessary to dry it at the same time. However, the existing drying equipment needs to face the ordinary drying method when drying long strips of materials such as lavender. The air flow circulation effect inside the lavender pile is not good, and the deep penetration of the air transmission parts into the lavender pile affects the unloading and discharging of the materials, resulting in the problem of inconvenient packaging of the discharging materials. Summary of the invention

[0003] In order to overcome the shortcomings of ordinary drying methods, such as poor air flow inside the lavender pile, which affects the drying efficiency, and inserting the air conveying parts deep into the lavender pile affects the discharge, resulting in inconvenient packaging of the discharged materials, the present invention provides an intelligent raw material processing equipment for flavor production.

[0004] The technical implementation scheme of the present invention is: an intelligent raw material processing equipment for flavor production, including a processing cabin and a baffle; a cabin door is movably connected to the processing cabin; a debris discharge port is provided on the processing cabin; a material discharge port is provided on the processing cabin; a baffle is movably connected at the material discharge port; it also includes a support frame, a connecting frame, an air blowing pipe, a filter screen, a connecting rod, a block, a limiting roller, a lifting assembly and a moving assembly; a support frame is rotatably connected in the processing cabin, and an electric rotating structure for driving the support frame is provided on the processing cabin; a lifting assembly is connected to the support frame; the lifting assembly is connected to the connecting frame; the connecting frame is set to be hollow inside, and a plurality of air blowing pipes are fixedly connected and connected to the upper side of the connecting frame; a filter screen is detachably connected to the left side of the support frame; a plurality of wrapping strips are provided on the filter screen, and a plurality of air blowing pipes are provided on each wrapping strip The lavender passes through the through groove. During processing, the lavender is laid flat in a posture perpendicular to the wrapping strip; a moving component is connected in the processing cabin, and the moving component is divided into an upper moving part and a lower moving part; the upper moving part is connected to a connecting rod, and the connecting rod is detachably connected to the other end of the filter; the lower moving part is connected to a clamping block; a clamping groove running through one end of the limiting roller is provided on the limiting roller, and the limiting roller forms a plug-in fit with the clamping block through the clamping groove; a buckle is provided at the other end of the limiting roller; two insertion holes for inserting the limiting roller from the outside into the processing cabin are provided on the same side wall of the processing cabin, and the insertion holes are distributed at both ends of the support frame, and the lowest point height of the insertion hole is equal to the upper surface height of the support frame in the horizontal state, and the limiting roller is parallel to the connecting rod; the filter covers the surface of the support frame, and the interior of the processing cabin is divided into upper and lower spaces with the support frame as the boundary.

[0005] Furthermore, the lifting assembly includes a first slide rail and a first electric slider; four vertical first slide rails are fixedly connected to the lower side of the support frame; each first slide rail is slidably connected to a first electric slider, and all the first electric sliders are fixedly connected to the connecting frame.

[0006] Furthermore, the upper movable part includes a second slide rail and a second electric slider; two symmetrical second slide rails are fixedly connected in the processing cabin, the second slide rails are L-shaped, and the vertical side of the L-shape is located on the left side inside the processing cabin; each second slide rail is slidably connected to a second electric slider, and the two second electric sliders are connected to the connecting rod together.

[0007] Furthermore, the lower moving part includes a third slide rail and a third electric slider; two symmetrical third slide rails are fixedly connected in the processing cabin; a third electric slider is slidably connected to each third slide rail, and the two third electric sliders are commonly connected to the clamping block.

[0008] Furthermore, it also includes a driving member, a first connecting plate, a second connecting plate and a vibration bar; a plurality of driving members are fixedly connected to the processing cabin; the output ends of all driving members are commonly fixedly connected to the first connecting plate; the first connecting plate is slidably connected to the second connecting plate, a vibration motor is arranged on the second connecting plate, and a spring is arranged between the first connecting plate and the second connecting plate; a plurality of vibration bars for driving the lavender to shake are fixedly connected to the side of the second connecting plate facing the processing cabin, and a through groove for the vibration bar to pass through is opened on the wall surface of the processing cabin, and the inner diameter of the corresponding through groove on the processing cabin is larger than the diameter of the vibration bar.

[0009] Furthermore, it also includes an air suction frame; the air suction frame is fixedly connected to the baffle door, the air suction frame is connected to the external air pump through an air pipe, a baffle net is arranged in the air suction frame, and the air suction frame is located above the support frame.

[0010] Furthermore, it also includes a π-shaped support member; a plurality of π-shaped support members arranged in an inclined manner are fixedly connected to the bottom of the inner side of the processing chamber.

[0011] Furthermore, a humidity sensor is arranged in the air intake frame.

[0012] Furthermore, the inner bottom surface of the processing chamber is arranged to be inclined downward toward one side of the impurity discharge port.

[0013] Furthermore, it also includes a support plate; the support plate is fixedly connected in the processing cabin, and the support plate is located above the discharge port.

[0014] Beneficial effects: the present invention realizes drying lavender by blowing out hot air through the air blowing pipe. Since the air blowing pipe is evenly distributed inside the long strip of lavender, compared with the existing common drying method, the circulation effect of the air flow inside the lavender pile is effectively guaranteed, and the uniform drying effect of the lavender can be effectively achieved, and the vibration bar is inserted into the lavender. While the lavender is blown and dried through the air blowing pipe, the vibration bar is used to vibrate inside the lavender. By vibrating the lavender, granular impurities such as soil blocks and sand particles trapped in the lavender can be shaken off. By evenly inserting a plurality of vibration bars into the lavender pile for vibration, it is avoided that the vibration energy needs to be transmitted upward from the bottom layer of the lavender pile, and the vibration effect on the lavender is effectively improved. A smaller vibration power can be used to achieve the same vibration effect. At the same time, more pores are generated inside the lavender, which promotes the circulation effect of the hot air blown out by the air blowing pipe inside the lavender, thereby promoting the drying effect of the lavender. The vibration bar drives the lavender to shake so that the dust adhering to the lavender is lifted up, and then the water vapor and dust inside the processing chamber are sucked out through the suction frame, thereby effectively ensuring the drying and impurity removal effect of the lavender; When discharging, first pull the limit roller out of the processing cabin from the insertion hole on the processing cabin. At this time, the limit roller will no longer block the filter screen. Then, one end of the filter screen is driven to move to the left to the leftmost side of the processing cabin through the connecting rod, and then continues to move downward along the L-shaped vertical part of the second slide rail, so that the two ends of the filter screen are close to each other. In this process, the end of the filter screen driven by the connecting rod will bypass the top of the lavender pile to gradually wrap the lavender pile through the filter screen, and the bundling and wrapping effect of the lavender pile can be enhanced by the wrapping strip. Then, the blocking door is opened manually to rotate the support frame counterclockwise. Before the connecting rod moves, the air blowing tube is moved downward to separate from the wrapping strip to avoid the air blowing tube from blocking the movement of the lavender. The filter is then manually removed from the connecting rod and the support frame, and the two ends of the filter are tied and fixed together to complete the packing of the lavender pile. The filter and the lavender pile wrapped by it can be taken out from the discharge port, thereby facilitating the removal of the lavender pile. There is no need to manually use tools such as grass rakes to dig the lavender out of the processing cabin to avoid the destruction of its neatly arranged state. At the same time, the processed lavender can be directly wrapped, which effectively simplifies the subsequent packaging and storage steps. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1 This is a schematic diagram of the three-dimensional structure of the intelligent raw material processing equipment for flavor production of the present invention; Figure 2 is a cross-sectional view of a processing chamber of the present invention; Figure 3 It is a schematic diagram of the three-dimensional structure of the connection frame and the air blowing pipe combination of the present invention; Figure 4 For the present invention Figure 3 The enlarged schematic diagram at A in the middle; Figure 5 It is a front view of the present invention; Figure 6 It is a schematic diagram of the three-dimensional structure of the second slide rail, the second electric slider, the connecting rod, the third slide rail, the third electric slider and the limiting roller combination of the present invention; Figure 7 It is a schematic diagram of the three-dimensional structure of the first connecting plate, the second connecting plate and the vibration bar of the present invention; Figure 8 It is a schematic diagram of the state of discharging of the present invention; Fig. 9 For the present invention Figure 8 Enlarged schematic diagram of point B in the middle.

[0016] The meaning of the reference numbers in the figure: 1-processing cabin, 1001-cabin door, 1002-discharge port, 1003-discharge port, 2-support frame, 3-rest plate, 3001-second baffle, 4-connecting frame, 5-blowing pipe, 6-baffle door, 7-suction frame, 7001-baffle net, 8-π-shaped support, 101-filter net, 10101-wrapping bar, 201-first slide rail, 202-first electric slider, 301-driving member, 302-first connecting plate, 303-second connecting plate, 304-vibration bar, 401-second slide rail, 402-second electric slider, 403-connecting rod, 404-third slide rail, 405-third electric slider, 406-block, 407-limiting roller. DETAILED DESCRIPTION

[0017] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.

[0018] Example 1 An intelligent processing equipment for raw materials used in flavor production, such as Figure 1-Figure 9 As shown, it includes a processing cabin 1 and a baffle 6; a cabin door 1001 is rotatably connected to the processing cabin 1; a debris discharge port 1002 is provided at the lower side of the processing cabin 1; a material discharge port 1003 is provided on the left side of the processing cabin 1; and a baffle 6 is rotatably connected to the material discharge port 1003; It also includes a support frame 2, a connecting frame 4, an air blowing pipe 5, a filter 101, a connecting rod 403, a block 406, a limiting roller 407, a lifting assembly and a moving assembly; the processing cabin 1 is rotatably connected to the support frame 2, and the processing cabin 1 is provided with an electric rotating structure for driving the support frame 2, and the electric rotating structure is a motor; the lower side of the support frame 2 is connected to the lifting assembly; the connecting frame 4 is connected to the lifting assembly, and the lifting assembly is used to drive the connecting frame 4 to move up and down; the connecting frame 4 is set to be hollow inside, and the connecting frame 4 is connected to an external air pump through an air pipe, and a plurality of air blowing pipes 5 for drying lavender are fixedly connected and connected to the upper side of the connecting frame 4, and a plurality of air blowing holes are opened on the air blowing pipes 5; a filter screen 101 is hung on the left side of the supporting frame 2 through a hook; a plurality of wrapping strips 10101 are arranged on the filter screen 101, and each wrapping strip 10101 is provided with a plurality of through grooves for the air blowing pipes 5 to pass through. During processing, the lavender is laid flat in a posture perpendicular to the wrapping strips 10101; a moving component is connected in the processing cabin 1, The moving assembly is divided into an upper moving part and a lower moving part; the upper moving part is connected to a connecting rod 403, and the other end of the connecting rod 403 and the filter screen 101 is hooked to the upper moving part to drive the connecting rod 403 to move left and right and up and down; the lower moving part is connected to a clamping block 406; a clamping groove is provided on a limiting roller 407 that passes through one end thereof, and the limiting roller 407 is plugged into the clamping block 406 through the clamping groove; a buckle is provided at the other end of the limiting roller 407; two It is used to insert the limiting roller 407 from the outside into the insertion hole in the processing cabin 1, the insertion holes are distributed at both ends of the support frame 2, the lowest point height of the insertion hole is equal to the upper surface height of the support frame 2 in the horizontal state, and the limiting roller 407 is parallel to the connecting rod 403; the connecting rod 403 and the limiting roller 407 cooperate with the support frame 2 to straighten the filter screen 101 and make it close to the support frame 2; the filter screen 101 covers the surface of the support frame 2, and the interior of the processing cabin 1 is divided into two upper and lower spaces with the support frame 2 as the boundary.

[0019] The lifting assembly includes a first slide rail 201 and a first electric slider 202; four vertical first slide rails 201 are bolted to the lower side of the support frame 2; each first slide rail 201 is slidably connected to a first electric slider 202, and all first electric sliders 202 are fixedly connected to the connecting frame 4.

[0020] The upper movable part includes a second slide rail 401 and a second electric slider 402; two symmetrical second slide rails 401 are bolted together in the processing cabin 1, the second slide rail 401 is L-shaped, and the vertical side of the L-shape is located on the left side inside the processing cabin 1; each second slide rail 401 is slidably connected to a second electric slider 402, and the two second electric sliders 402 are connected to a connecting rod 403.

[0021] The lower moving part includes a third slide rail 404 and a third electric slider 405; two symmetrical third slide rails 404 are bolted in the processing cabin 1; each third slide rail 404 is slidably connected to a third electric slider 405, and the two third electric sliders 405 are connected to the clamping block 406 together.

[0022] It also includes a driving member 301, a first connecting plate 302, a second connecting plate 303 and a vibration bar 304; a plurality of driving members 301 that are symmetrical front and back are fixedly connected to the processing cabin 1, and the driving members 301 are hydraulic rods; the output ends of all driving members 301 are commonly fixedly connected to the first connecting plate 302; the first connecting plate 302 is slidably connected to the second connecting plate 303, a vibration motor is arranged on the second connecting plate 303, and a spring is arranged between the first connecting plate 302 and the second connecting plate 303; a plurality of vibration bars 304 are fixedly connected to the second connecting plate 303 on the side facing the processing cabin 1, and a through groove for the vibration bar 304 to pass through is opened on the wall of the processing cabin 1, and the inner diameter of the corresponding through groove on the processing cabin 1 is larger than the diameter of the vibration bar 304.

[0023] It also includes an air suction frame 7; the air suction frame 7 is detachably connected to the baffle door 6, the air suction frame 7 is connected to the external air pump through an air pipe, a baffle net 7001 is arranged in the air suction frame 7, and the air suction frame 7 is located above the support frame 2.

[0024] It also includes a π-shaped support member 8; a plurality of π-shaped support members 8 arranged in an inclined manner are fixedly connected to the bottom of the inner side of the processing chamber 1.

[0025] A humidity sensor is arranged in the air intake frame 7 .

[0026] The inner bottom surface of the processing chamber 1 is arranged to be tilted downward toward one side of the impurity discharge port 1002 to promote the flow of granular impurities to the impurity discharge port 1002 for discharge outwardly.

[0027] The processing chamber 1 further includes a support plate 3; the support plate 3 is fixedly connected to one side of the processing chamber 1 near the free end of the support frame 2, and the support plate 3 is located above the discharge port 1003. Figure 2 As shown, the side where the first connecting plate 302 is located is the right side, and combined with Figure 3As shown, with the side where the second slide rail 401 is located as the rear side, when working, the hatch 1001 is opened manually, and then an appropriate amount of harvested lavender is manually placed into the processing cabin 1 through the hatch 1001, and the lavender is arranged in a forward or backward direction and placed on the upper side of the filter 101, and then the hatch 1001 is manually closed. At this time, the blowing pipe 5 is evenly distributed inside the lavender pile, and hot air is blown into the hollow connecting frame 4 inside by controlling the air pump, and then the hot air flows from the inside of the connecting frame 4 to the blowing pipe 5, and the hot air is blown out through the blowing holes on the blowing pipe 5, and then the lavender is dried by the hot air. Moreover, since the blowing pipe 5 is evenly distributed inside the long strip of lavender, compared with the existing ordinary drying method, the circulation effect of the airflow inside the lavender pile is effectively guaranteed, and the uniform drying effect of the lavender can be effectively achieved.

[0028] It should be noted that before adding lavender to the processing chamber 1, the driving member 301 is first controlled to push the first connecting plate 302 and the parts connected thereto to move to the right, so that the vibration bar 304 moves to the right to the outside of the processing chamber 1, thereby preventing the vibration bar 304 from blocking the lavender from contacting the filter screen 101. After resetting the cabin door 1001, the driving member 301 is controlled to drive the first connecting plate 302 and the parts connected thereto to reset to the left, so that the vibration bar 304 is inserted into the lavender. Then, while blowing and drying the lavender through the air blowing pipe 5, the vibration motor on the second connecting plate 303 is controlled to drive the second connecting plate 303 to dry the lavender. The vibration bar 304 vibrates, and the spring between the first connecting plate 302 and the second connecting plate 303 is adaptively expanded and contracted, and the relative position between the first connecting plate 302 and the second connecting plate 303 is maintained by the elastic force of the spring, so that the vibration bar 304 vibrates inside the lavender pile, and the lavender is vibrated to shake off the granular impurities such as soil and sand particles trapped in the lavender, and then the granular impurities pass through the filter screen 101 and fall downward to the bottom of the processing chamber 1, and then the granular impurities are guided by the inclined bottom surface of the processing chamber 1 to flow to the impurity discharge port 1002 and discharged outward, because the lavender The pile is in a loose and fluffy state, so when the existing vibration plate vibrates and removes impurities from the lavender pile, the lavender pile is relatively soft due to its structural transmission, which weakens the vibration energy transmission to a certain extent, resulting in a weak vibration effect on the upper layer of lavender. However, the present invention inserts multiple vibration bars 304 evenly into the lavender pile for vibration, thereby avoiding the need for vibration energy to be transmitted upward from the bottom layer of the lavender pile, effectively improving the vibration effect on the lavender, and achieving the same vibration effect with a smaller vibration power. At the same time, the vibration bar 304 is used to vibrate inside the lavender, so that more pores are generated inside the lavender, and the blowing pipe 5 is optimized to blow out The circulation effect of hot air inside the lavender promotes the drying effect of the lavender. Since the soil dust in the field is still adhered to the lavender, the dust adhesion on its surface is reduced after the lavender is dried, so that the dust adhered to the lavender can be lifted up by shaking. At this time, there is a lot of dust and water vapor in the processing chamber 1. In order to avoid the continuous accumulation of dust and water vapor in the processing chamber 1, the air pump can be controlled to suck the water vapor and dust inside the processing chamber 1 through the suction frame 7. The water vapor is directly sucked away, and the dust is intercepted by the blocking net 7001 and adheres to its surface, thereby effectively ensuring the drying and impurity removal effect of the lavender.

[0029] like Figure 5As shown, when the humidity sensor in the air intake frame 7 detects that the humidity is close to the normal humidity of the environment on that day, it can be known that the lavender is dried. Therefore, the buckle of the limiting roller 407 is hooked by a hook-shaped tool, and the limiting roller 407 is pulled out of the processing cabin 1 from the insertion hole on the processing cabin 1. At this time, the limiting roller 407 will no longer block the filter screen 101, and then the second electric slider 402 is controlled to drive the connecting rod 403 to move to the left along the second slide rail 401. After one end of the filter screen 101 is driven to the left to the leftmost side of the processing cabin 1 by the connecting rod 403, it continues to move along the second slide rail 401. The L-shaped vertical part of the slide rail 401 moves downward, so that the two ends of the filter 101 are close to each other. During this process, the end of the filter 101 driven by the connecting rod 403 will pass over the lavender pile to gradually wrap the lavender pile through the filter 101, and the bundling and wrapping effect of the lavender pile can be enhanced by the wrapping strip 10101. Then, the baffle door 6 is opened manually, and the electric drive rotating structure at the connection between the support frame 2 and the processing cabin 1 is controlled to drive the support frame 2 to rotate counterclockwise. Before the second electric slider 402 moves, it is necessary to control the drive member 301 Drive the vibration bar 304 to move rightward to the outside of the processing chamber 1, and at the same time, it is necessary to control the first electric slider 202 to drive the connecting frame 4 and the blowing pipe 5 to move downward along the first slide rail 201, so that the blowing pipe 5 moves downward to separate from the wrapping bar 10101, so as to avoid the blowing pipe 5 blocking the movement of the lavender; after moving downward, the connecting frame 4 loses its supporting effect on the filter screen 101, and the filter screen 101 rests on the π-shaped support member 8, so that the filter screen 101 and the lavender pile wrapped by the filter screen 101 can be supported and rested by the π-shaped support member 8, so as to avoid the wrapped lavender. The lavender pile falls to the bottom of the processing chamber 1, and then the filter screen 101 is manually removed from the connecting rod 403 and the supporting frame 2. After the two ends of the filter screen 101 are tied and fixed together, the packing of the lavender pile is completed. The filter screen 101 and the lavender pile wrapped by it can be taken out from the discharge port 1003, thereby facilitating the removal of the lavender pile. There is no need to manually use tools such as grass rakes to dig the lavender out of the processing chamber 1 to avoid the destruction of its neatly arranged state. At the same time, the processed lavender can be directly packaged, which effectively simplifies the subsequent packaging and storage steps.

[0030] It should be noted that after hooking the new filter 101 with the hooks on the support frame 2 and the connecting rod 403, so that the new filter 101 is connected to the connecting rod 403 and the support frame 2, the third electric slider 405 can be controlled to drive the clamping block 406 to move to the left to the leftmost side of the processing cabin 1, and then the connecting rod 403 is controlled to move to the right to gradually unfold the filter 101. When the filter 101 is no longer clumped on the left side of the processing cabin 1, but at this time the filter 101 as a whole is only initially unfolded and not fully unfolded, then the limiting roller 407 is reinserted into the processing cabin 1 from the insertion hole on the processing cabin 1, so that the limiting roller 407 is re-engaged with the clamping block 406 and is located on the left side of the filter 101, and then the limiting roller 407 is driven to move to the right by controlling the third electric slider 405, so that the new filter 101 is straightened and covered on the surface of the support frame 2 to restore to its original state.

[0031] It should be noted that when the support frame 2 is rotated to be tilted, its left side abuts against the abutment plate 3 to enhance the stability of the support frame 2, so as to avoid the additional force generated when manually pulling the filter 101 to move the filter 101 and the lavender pile, causing the support frame 2 to shake, resulting in greater pressure on the electric drive rotating structure at the rotation point of the support frame 2.

[0032] After the present invention has been used for a period of time, a lot of dust will adhere to the blocking net 7001. To ensure the suction effect of the support frame 2, the suction frame 7 can be regularly removed from the blocking door 6 to clean the blocking net 7001.

[0033] Finally, it should be noted that the above embodiments are only used to illustrate the technical solution of the present invention rather than to limit the scope of protection of the present invention. Although the present invention has been described in detail with reference to the preferred embodiments, those skilled in the art should understand that the technical solution of the present invention can be modified or replaced by equivalents without departing from the essence and scope of the technical solution of the present invention.

Claims

1. A raw material intelligent processing equipment for flavor production, comprising a processing cabin (1) and a baffle (6); the processing cabin (1) is movably connected to a cabin door (1001); the processing cabin (1) is provided with a debris discharge port (1002); the processing cabin (1) is provided with a material discharge port (1003); the material discharge port (1003) is movably connected to the baffle (6); the characteristics are: The processing chamber (1) also comprises a support frame (2), a connecting frame (4), an air blowing pipe (5), a filter screen (101), a connecting rod (403), a clamping block (406), a limiting roller (407), a lifting assembly and a moving assembly; the processing chamber (1) is rotatably connected to the support frame (2), and the processing chamber (1) is provided with an electric rotating structure for driving the support frame (2); the support frame (2) is connected with the lifting assembly; the lifting assembly is connected with the connecting frame (4); the connecting frame (4) is arranged to be hollow inside, and a plurality of air blowing pipes (5) are fixedly connected to and communicated with the upper side of the connecting frame (4); the left side of the support frame (2) is detachably connected with the filter screen (101); a plurality of wrapping strips (10101) are provided on the filter screen (101), and each wrapping strip (10101) is provided with a plurality of through grooves for the air blowing pipe (5) to pass through, and during processing, the lavender is laid flat in a posture perpendicular to the wrapping strips (10101); the processing chamber (1) is connected with the moving assembly A movable assembly is provided, wherein the movable assembly is divided into an upper movable part and a lower movable part; the upper movable part is connected to a connecting rod (403), and the connecting rod (403) is detachably connected to the other end of the filter screen (101); the lower movable part is connected to a clamping block (406); a clamping groove is provided on the limiting roller (407) which passes through one end thereof, and the limiting roller (407) is plugged into the clamping block (406) through the clamping groove; a buckle is provided on the other end of the limiting roller (407); two insertion holes for inserting the limiting roller (407) from the outside into the processing chamber (1) are provided on the same side wall surface of the processing chamber (1), and the insertion holes are distributed at both ends of the support frame (2), and the lowest point height of the insertion hole is equal to the height of the upper surface of the support frame (2) in a horizontal state, and the limiting roller (407) is parallel to the connecting rod (403); the filter screen (101) covers the surface of the support frame (2), and the interior of the processing chamber (1) is divided into upper and lower spaces with the support frame (2) as the boundary.

2. The intelligent raw material processing equipment for flavor production according to claim 1 is characterized in that: The lifting assembly comprises a first slide rail (201) and a first electric slider (202); four vertical first slide rails (201) are fixedly connected to the lower side of the support frame (2); each first slide rail (201) is slidably connected to a first electric slider (202), and all the first electric sliders (202) are fixedly connected to the connecting frame (4).

3. The intelligent raw material processing equipment for flavor production according to claim 1 is characterized in that: The upper movable part comprises a second slide rail (401) and a second electric slider (402); two symmetrical second slide rails (401) are fixedly connected in the processing chamber (1); the second slide rails (401) are L-shaped, and the vertical side of the L-shape is located on the left side inside the processing chamber (1); each second slide rail (401) is slidably connected to a second electric slider (402), and the two second electric sliders (402) are connected to a connecting rod (403) in common.

4. The intelligent raw material processing equipment for flavor production according to claim 1 is characterized in that: The lower movable part comprises a third slide rail (404) and a third electric slider (405); two symmetrical third slide rails (404) are fixedly connected in the processing cabin (1); each third slide rail (404) is slidably connected to a third electric slider (405), and the two third electric sliders (405) are commonly connected to a clamping block (406).

5. The intelligent raw material processing equipment for flavor production according to claim 1 is characterized in that: The invention also comprises a driving member (301), a first connecting plate (302), a second connecting plate (303) and a vibration bar (304); a plurality of two driving members (301) are fixedly connected to the processing chamber (1); the output ends of all driving members (301) are commonly fixedly connected to the first connecting plate (302); the first connecting plate (302) is slidably connected to the second connecting plate (303), a vibration motor is arranged on the second connecting plate (303), and a spring is arranged between the first connecting plate (302) and the second connecting plate (303); a plurality of vibration bars (304) for driving the lavender to vibrate are fixedly connected to the side of the second connecting plate (303) facing the processing chamber (1); a through groove for the vibration bar (304) to pass through is opened on the wall surface of the processing chamber (1), and the inner diameter of the corresponding through groove on the processing chamber (1) is larger than the diameter of the vibration bar (304).

6. The intelligent raw material processing equipment for flavor production according to claim 1 is characterized in that: It also includes an air suction frame (7); the air suction frame (7) is fixedly connected to the baffle door (6); the air suction frame (7) is connected to an external air pump through an air pipe; a baffle net (7001) is arranged in the air suction frame (7); and the air suction frame (7) is located above the support frame (2).

7. The intelligent raw material processing equipment for flavor production according to claim 6 is characterized by: It also comprises a π-shaped support member (8); a plurality of π-shaped support members (8) arranged in an inclined manner are fixedly connected to the inner bottom of the processing chamber (1).

8. The intelligent raw material processing equipment for flavor production according to claim 6 is characterized by: A humidity sensor is arranged in the air suction frame (7).

9. The intelligent raw material processing equipment for flavor production according to claim 1 is characterized in that: The inner bottom surface of the processing chamber (1) is arranged to be inclined downward toward one side of the impurity discharge port (1002).

10. The intelligent raw material processing equipment for flavor production according to claim 1 is characterized by: It also includes a support plate (3); the support plate (3) is fixedly connected in the processing chamber (1), and the support plate (3) is located above the discharge port (1003).

Citation Information

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