Flower mushroom meal replacement powder capable of preventing corrosion by using natural food materials and powder making device

By designing a powder-making device that includes a servo motor drive, combined with a rectangular shielding frame and an inclined protective bar, the problem of low pulverization efficiency and significant safety hazards has been solved, achieving efficient pulverization and safe operation.

CN121198395APending Publication Date: 2025-12-26HUNAN KUNDA BIOTECHNOLOGY CO LTD
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Patent Information

Application Number
CN202511559896.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-10-29
Publication Date
2025-12-26

AI Technical Summary

Technical Problem

Existing mushroom meal replacement powder production equipment suffers from problems such as low grinding efficiency, significant safety hazards for workers during the grinding process, and inability to guarantee a safe distance.

Method used

A device was designed that includes a powder-making mechanism, a collection auxiliary component, a movable protective component, and a drive control component. The device uses a servo motor to drive a circular powder-making roller to pulverize raw materials, utilizes a rectangular shielding frame and a movable collection box to improve pulverization efficiency, an inclined protective bar to isolate workers, and a control panel to ensure a safe distance.

Benefits of technology

It improves crushing efficiency, reduces safety hazards, ensures a safe distance between workers and the crushing device, and avoids raw material splashing and personnel approaching during the crushing process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention provides shiitake mushroom meal replacement powder capable of preventing corrosion by using natural food materials and a powder making device, and relates to the technical field of raw material crushing, the shiitake mushroom meal replacement powder comprises a collection auxiliary part, a movable protection part and a driving control part; the collecting auxiliary part is mounted on the pulverizing mechanism and used for collecting powder pulverized by the pulverizing mechanism, and the collecting auxiliary part is further used for assisting in improving the pulverizing efficiency of the pulverizing mechanism; the movable protection part is installed on the powder making mechanism and used for isolating workers. The driving control part is mounted on the movable protection part, and the driving control part is used for controlling the pulverizing mechanism and moving the movable protection part; the rectangular auxiliary plate can move downwards along with the movable collecting box at the same time, the pushing effect on raw materials above the two circular pulverizing rollers is achieved, and the smashing efficiency of the raw materials is improved in an auxiliary mode; the problems that the follow-up smashing efficiency cannot be improved through the assistance of smashed powder, and the smashing time of raw materials is prolonged are solved.
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Description

TECHNICAL FIELD

[0001] The present application belongs to the technical field of raw material crushing, and more particularly relates to a natural food material preservative flower mushroom meal replacement powder and a powder making device. BACKGROUND

[0002] In the production process of the flower mushroom meal replacement powder, crushing is a key step to ensure product quality. The crushed flower mushroom powder is more easily mixed with other meal replacement raw materials, ensuring consistent distribution of nutritional ingredients. Appropriate degree of crushing also optimizes the dissolution rate of active ingredients in the flower mushroom, enhancing the nutritional efficacy of the meal replacement powder.

[0003] The currently used raw material crushing device still has the following problems: 1. The crushed powder cannot assist in improving the subsequent crushing efficiency, increasing the crushing time of the raw material; 2. There is a lack of automatic isolation structure, which causes the workers to approach the crushing device during the crushing process; 3. The safety distance between the workers and the crushing device cannot be guaranteed before the crushing device is started, which poses a safety hazard. SUMMARY

[0004] The disclosed embodiment relates to a natural food material preservative flower mushroom meal replacement powder and a powder making device, which has a powder making mechanism, a collection aid, a movable protective part, and a drive control part. The rectangular auxiliary plate can move downward together with the movable collection box, which pushes the raw materials above the two circular powder making rollers and assists in improving the crushing efficiency of the raw materials. When the U-shaped movable frame drives the two inclined protective rods to slide forward, the two inclined protective rods isolate the workers, preventing them from approaching. This ensures a certain safety distance between the workers and the powder making shell, reducing the safety hazard. This solves the problems of being unable to assist in improving the subsequent crushing efficiency with the crushed powder, the workers approaching the crushing device during the crushing process, and the inability to guarantee the safety distance between the workers and the crushing device.

[0005] In a first aspect, the present disclosure provides a powder making device for a natural food material preservative flower mushroom meal replacement powder, comprising: a powder making mechanism, a collection aid, a movable protective part, and a drive control part. The collection aid is installed on the powder making mechanism, and is used to collect the crushed powder of the powder making mechanism and assist in improving the powder making efficiency of the powder making mechanism. The movable protective part is installed on the powder making mechanism, and is used to isolate the workers. The drive control part is installed on the movable protective part, and is used to control the powder making mechanism and move the movable protective part.

[0006] In at least some embodiments, the powder making mechanism comprises: a powder making shell, two circular powder making rollers, two servo motors and four circular mounting shafts a; the two circular powder making rollers are rotatably mounted on the powder making shell; the two servo motors are fixedly mounted on the left and right sides of the powder making shell, and the output shafts of the two servo motors are fixedly connected with the two circular powder making rollers; the four circular mounting shafts a are fixedly mounted on the powder making shell.

[0007] In at least some embodiments, the powder making mechanism further comprises: a rectangular shielding frame, four circular connecting rings and four reset tension springs a; the rectangular shielding frame is slidably mounted outside the four circular mounting shafts a; the four circular connecting rings are fixedly mounted at the top ends of the four circular mounting shafts a; the four reset tension springs a are sleeved outside the four circular mounting shafts a; the bottom ends of the four reset tension springs a are fixedly connected with the rectangular shielding frame, and the top ends of the four reset tension springs a are fixedly connected with the four circular connecting rings.

[0008] In at least some embodiments, the collection aid comprises: four circular mounting rods, a movable collection box, a circular sealing cover and four supporting springs a; the four circular mounting rods are fixedly mounted on the powder making shell; the movable collection box is slidably mounted on the four circular mounting rods; the circular sealing cover is threadedly connected to the movable collection box; the four supporting springs a are sleeved outside the four circular mounting rods.

[0009] In at least some embodiments, the collection aid further comprises: two circular connecting rods, a V-shaped mounting bracket and a rectangular auxiliary plate; the two circular connecting rods are fixedly mounted on the top of the movable collection box; the V-shaped mounting bracket is fixedly mounted on the top of the two circular connecting rods; the rectangular auxiliary plate is fixedly mounted on the bottom of the V-shaped mounting bracket, and the rectangular auxiliary plate is located inside the rectangular shielding frame.

[0010] In at least some embodiments, the movable protective member comprises: a U-shaped movable bracket, two inclined protective rods and a connecting flat plate; the U-shaped movable bracket is slidably mounted on the powder making shell; the two inclined protective rods are fixedly mounted on the left and right sides of the U-shaped movable bracket; the connecting flat plate is fixedly mounted outside the U-shaped movable bracket.

[0011] In at least some embodiments, the activity shield further comprises: reset tension spring b, solid sphere and support spring b; the reset tension spring b is provided with two, and the two reset tension spring b is sleeved on the outside of the U-shaped movable frame; the front end of the two reset tension spring b is fixedly connected with the powder making shell, and the rear end of the two reset tension spring b is fixedly connected with the connecting plate; the solid sphere is provided with four, and the four solid sphere is slidably installed on the U-shaped movable frame, and the four solid sphere further contacts with the powder making shell; the support spring b is provided with two, and the two support spring b is installed in the inside of the U-shaped movable frame, and the left support spring b is located between the two solid sphere on the left side, and the right support spring b is located between the two solid sphere on the right side.

[0012] In at least some embodiments, the drive control part comprises: a steel wire rope, a rectangular mounting frame and a control panel; the top end of the steel wire rope is connected to the U-shaped movable frame; the rectangular mounting frame is fixedly installed at the bottom end of the steel wire rope; the control panel is fixedly installed on the rectangular mounting frame, and the control panel is electrically connected with the two servo motors.

[0013] In at least some embodiments, the drive control part further comprises: a protective shield, a circular mounting shaft b and a support spring c; the protective shield is slidably installed on the outside of the rectangular mounting frame; the circular mounting shaft b is provided with two, and the two circular mounting shaft b is fixedly installed on the protective shield, and the two circular mounting shaft b is slidably connected with the rectangular mounting frame; the support spring c is provided with two, and the two support spring c is sleeved on the outside of the two circular mounting shaft b.

[0014] In another aspect of the present disclosure, a kind of flower mushroom meal replacement powder preserved with natural food material is provided, comprising: flower mushroom, black sesame, soybean and propolis;It is prepared by using the powder making device of the above-mentioned flower mushroom meal replacement powder preserved with natural food material.

[0015] Compared with the prior art, the present application has the following beneficial effects: 1、when the output shaft of the two servo motors rotates, the two circular powder making rollers rotate inward at the same time, which has an automatic crushing effect on the raw materials;The setting of the four support springs a enables the movable collection box to slide downward when the weight increases;The setting of the circular sealing cover facilitates the staff to discharge the powder in the movable collection box; In addition, when the movable collection box slides downward when the weight increases, the rectangular auxiliary plate can move downward at the same time with the movable collection box, which pushes the raw materials above the two circular powder making rollers and assists to improve the crushing efficiency of the raw materials;The setting of the rectangular shielding frame has a sealing effect, which avoids the raw materials in the powder making shell from splashing during crushing;When the staff places the raw materials to be crushed, they first press the rectangular shielding frame downward, and then pour the raw materials into the gap between the rectangular shielding frame and the rectangular auxiliary plate.

[0016] 2、The U-shaped movable frame can drive two inclined protective rods to slide, when the U-shaped movable frame can drive the two inclined protective rods to slide forward, the two inclined protective rods can isolate the workers, so as to avoid the workers from approaching; when the U-shaped movable frame can drive the two inclined protective rods to reset, the two inclined protective rods cannot continue to isolate the workers, so as to facilitate the workers to discharge the crushed powder and add the raw materials to be crushed; In addition, the arrangement of the four solid spheres can play the elastic limiting effect on the U-shaped movable frame, so that the U-shaped movable frame can be in a stable state after resetting; when the four solid spheres are separated from the powder making shell, the U-shaped movable frame can automatically slide forward under the action of the two reset springs b.

[0017] 3、When the workers start the two servo motors through the control panel, the workers need to pull the protective cover forward, so as to ensure that there is a certain safety distance between the workers and the powder making shell, and the safety hidden danger is reduced; when the workers pull the protective cover forward, the four solid spheres are separated from the powder making shell first, so that the U-shaped movable frame slides forward, so that the U-shaped movable frame will not be forgotten to slide out, and when the workers continue to pull the protective cover, the control panel is removed from the protective cover. BRIEF DESCRIPTION OF DRAWINGS

[0018] In order to more clearly illustrate the technical scheme of the embodiments of the present application, the drawings of the embodiments will be briefly introduced below.

[0019] The drawings in the following description only relate to some embodiments of the present application, but not limit the present application.

[0020] In the drawings: Figure 1 The three-dimensional structure schematic diagram of the present application is shown; Figure 2 The central cut structure schematic diagram of the present application is shown; Figure 1 Figure 3 The local enlarged structure schematic diagram of the A area in the present application is shown; Figure 2 The structure schematic diagram of the collecting auxiliary part of the present application is shown; Figure 4 The bottom view structure schematic diagram of the present application is shown; Figure 5 Figure 1 The structure schematic diagram of the movable protective part of the present application is shown; Figure 6 The local enlarged structure schematic diagram of the B area in the present application is shown; Figure 7 The local enlarged structure schematic diagram of the B area in the present application is shown; Figure 2 The local enlarged structure schematic diagram of the B area in the present application is shown; Figure 8 ​​A partial enlarged structural schematic view of the C region in the present application is shown. Figure 6 A partial enlarged structural schematic view of the C region in the present application is shown. Figure 9 A structural schematic view of the driving control member of the present application is shown. Figure 10 A partial enlarged structural schematic view of the D region in the present application is shown. Figure 9 A partial enlarged structural schematic view of the D region in the present application is shown.

[0021] List of reference signs: 100, powdering mechanism; 101, powdering shell; 102, circular powdering roller; 103, servo motor; 104, circular mounting shaft a; 105, rectangular shielding frame; 106, circular connecting ring; 107, reset tension spring a; 200, collection aid; 201, circular mounting rod; 202, movable collection box; 203, circular sealing cover; 204, support spring a; 205, circular connecting rod; 206, V-shaped mounting bracket; 207, rectangular auxiliary plate; 300, movable protective member; 301, U-shaped movable bracket; 302, inclined protective rod; 303, connecting flat plate; 304, reset tension spring b; 305, solid sphere; 306, support spring b; 400, driving control member; 401, steel wire rope; 402, rectangular mounting frame; 403, control panel; 404, protective shielding cover; 405, circular mounting shaft b; 406, support spring c. DETAILED DESCRIPTION

[0022] In order to make the purpose, scheme and advantages of the technical solutions of the present application clearer, the technical solutions of the embodiments of the present application will be described clearly and completely below in conjunction with the drawings of the specific embodiments of the present application. Unless otherwise specified, the terms used herein have the meanings commonly used in the art. The same reference signs in the drawings represent the same components.

[0023] Embodiment: Please refer to Figures 1 to 10 The present application provides a powdering device for flower mushroom meal replacement powder using natural food materials, which comprises a powdering mechanism 100, a collection aid 200, a movable protective member 300 and a driving control member 400. The collection aid 200 is installed on the powdering mechanism 100, and is used to collect the powder after being crushed by the powdering mechanism 100, and also used to assist in improving the powdering efficiency of the powdering mechanism 100. The movable protective member 300 is installed on the powdering mechanism 100, and is used to isolate the workers. The driving control member 400 is installed on the movable protective member 300, and is used to control the powdering mechanism 100, and also used to move the movable protective member 300.

[0024] In the present disclosure, asFigures 1 to 4 As shown, the powder making mechanism 100 comprises a powder making shell 101, two circular powder making rollers 102, two servo motors 103 and four circular mounting shafts a 104; the two circular powder making rollers 102 are rotatably mounted on the powder making shell 101; the two servo motors 103 are fixedly mounted on the left and right sides of the powder making shell 101, and the output shafts of the two servo motors 103 are fixedly connected with the two circular powder making rollers 102; the four circular mounting shafts a 104 are fixedly mounted on the powder making shell 101; the powder making mechanism 100 further comprises a rectangular shielding frame 105, four circular connecting rings 106 and four reset tension springs a 107; the rectangular shielding frame 105 is slidingly mounted outside the four circular mounting shafts a 104; the four circular connecting rings 106 are fixedly mounted on the top ends of the four circular mounting shafts a 104; the four reset tension springs a 107 are sleeved outside the four circular mounting shafts a 104; the bottom ends of the four reset tension springs a 107 are fixedly connected with the rectangular shielding frame 105, and the top ends of the four reset tension springs a 107 are fixedly connected with the four circular connecting rings 106; The collecting auxiliary 200 comprises four circular mounting rods 201, a movable collecting box 202, a circular sealing cover 203 and four support springs a 204; the four circular mounting rods 201 are fixedly mounted on the powder making shell 101; the movable collecting box 202 is slidingly mounted on the four circular mounting rods 201; the circular sealing cover 203 is threadedly connected with the movable collecting box 202; the four support springs a 204 are sleeved outside the four circular mounting rods 201; the collecting auxiliary 200 further comprises two circular connecting rods 205, a V-shaped mounting bracket 206 and a rectangular auxiliary plate 207; the two circular connecting rods 205 are fixedly mounted on the top of the movable collecting box 202; the V-shaped mounting bracket 206 is fixedly mounted on the top of the two circular connecting rods 205; the rectangular auxiliary plate 207 is fixedly mounted on the bottom of the V-shaped mounting bracket 206, and the rectangular auxiliary plate 207 is located inside the rectangular shielding frame 105; The specific action is: because two circular grinding rollers 102 are rotatably installed on the grinding shell 101, and two servo motors 103 are fixedly installed on the left and right sides of the grinding shell 101, and the output shafts of the two servo motors 103 are fixedly connected with the two circular grinding rollers 102, when the output shafts of the two servo motors 103 rotate, the two circular grinding rollers 102 rotate inward at the same time, which has an automatic crushing effect on the raw materials; and because the movable collecting box 202 is slidably installed on the four circular mounting rods 201, and the four supporting springs a 204 are sleeved outside the four circular mounting rods 201, the movable collecting box 202 can slide downward after the weight increases; the circular sealing cover 203 is arranged, which facilitates the staff to discharge the powder in the movable collecting box 202; In addition, because two circular connecting rods 205 are fixedly installed on the top of the movable collecting box 202, and the V-shaped mounting frame 206 is fixedly installed on the top of the two circular connecting rods 205, and the rectangular auxiliary plate 207 is fixedly installed on the bottom of the V-shaped mounting frame 206, when the movable collecting box 202 slides downward after the weight increases, the rectangular auxiliary plate 207 can move downward at the same time with the movable collecting box 202, which has a pushing effect on the raw materials above the two circular grinding rollers 102, and assists to improve the crushing efficiency of the raw materials; and because the rectangular shielding frame 105 is slidably installed outside the four circular mounting shafts a 104, the bottom ends of the four reset tension springs a 107 are fixedly connected with the rectangular shielding frame 105, and the top ends of the four reset tension springs a 107 are fixedly connected with the four circular connecting rings 106, which has a sealing effect, avoiding the raw materials in the grinding shell 101 from splashing during crushing. When the staff places the raw materials to be crushed, first press the rectangular shielding frame 105 downward, and then pour the raw materials into the gap between the rectangular shielding frame 105 and the rectangular auxiliary plate 207.

[0025] In the embodiments of the present disclosure, as Figures 6 to 8As shown, the movable guard 300 comprises a U-shaped movable frame 301, two inclined guard rods 302 and a connecting plate 303; the U-shaped movable frame 301 is slidingly installed on the powder milling shell 101; the two inclined guard rods 302 are fixedly installed on the left and right sides of the U-shaped movable frame 301; the connecting plate 303 is fixedly installed on the outside of the U-shaped movable frame 301; the movable guard 300 further comprises two reset tension springs b 304, four solid spheres 305 and two support springs b 306; the two reset tension springs b 304 are sleeved on the outside of the U-shaped movable frame 301; the front ends of the two reset tension springs b 304 are fixedly connected with the powder milling shell 101, and the rear ends of the two reset tension springs b 304 are fixedly connected with the connecting plate 303; the four solid spheres 305 are slidingly installed on the U-shaped movable frame 301 and are in contact with the powder milling shell 101; the two support springs b 306 are installed in the inside of the U-shaped movable frame 301, and the left support spring b 306 is located between the two solid spheres 305 on the left, and the right support spring b 306 is located between the two solid spheres 305 on the right. Specifically, since the U-shaped movable frame 301 is slidingly installed on the powder milling shell 101, and the two inclined guard rods 302 are fixedly installed on the left and right sides of the U-shaped movable frame 301, the U-shaped movable frame 301 can drive the two inclined guard rods 302 to slide; when the U-shaped movable frame 301 drives the two inclined guard rods 302 to slide forward, the two inclined guard rods 302 can isolate the workers, avoiding the workers from approaching; when the U-shaped movable frame 301 drives the two inclined guard rods 302 to reset, the two inclined guard rods 302 cannot continue to isolate the workers, which facilitates the workers to discharge the crushed powder and add the raw materials to be crushed. In addition, since the four solid spheres 305 are slidingly installed on the U-shaped movable frame 301 and are in contact with the powder milling shell 101, and the two support springs b 306 are installed in the inside of the U-shaped movable frame 301, the U-shaped movable frame 301 can be elastically limited, so that the U-shaped movable frame 301 can be in a stable state after resetting; since the connecting plate 303 is fixedly installed on the outside of the U-shaped movable frame 301, the front ends of the two reset tension springs b 304 are fixedly connected with the powder milling shell 101, and the rear ends of the two reset tension springs b 304 are fixedly connected with the connecting plate 303, when the four solid spheres 305 are separated from the powder milling shell 101, the U-shaped movable frame 301 can automatically slide forward under the action of the two reset tension springs b 304.

[0026] In the embodiments of the present disclosure, as shown in Figure 9 and Figure 10As shown, the drive control piece 400 comprises: a steel wire rope 401, a rectangular mounting frame 402 and a control panel 403; the top end of the steel wire rope 401 is connected to the U-shaped movable frame 301; the rectangular mounting frame 402 is fixedly installed at the bottom end of the steel wire rope 401; the control panel 403 is fixedly installed on the rectangular mounting frame 402, and the control panel 403 is electrically connected with the two servo motors 103; the drive control piece 400 further comprises: a protective shielding cover 404, a circular mounting shaft b 405 and a supporting spring c 406; the protective shielding cover 404 is slidingly installed outside the rectangular mounting frame 402; the circular mounting shaft b 405 is provided with two, and the two circular mounting shafts b 405 are fixedly installed on the protective shielding cover 404 and slidingly connected with the rectangular mounting frame 402; the supporting spring c 406 is provided with two, and the two supporting springs c 406 are sleeved outside the two circular mounting shafts b 405; The specific role is: because the control panel 403 is fixedly installed on the rectangular mounting frame 402, and the protective shielding cover 404 is slidingly installed outside the rectangular mounting frame 402, when the worker starts the two servo motors 103 through the control panel 403, the worker needs to pull the protective shielding cover 404 forward, so as to ensure that there is a certain safety distance between the worker and the powder making shell 101, and reduce the safety hidden danger; and because the top end of the steel wire rope 401 is connected to the U-shaped movable frame 301, the rectangular mounting frame 402 is fixedly installed at the bottom end of the steel wire rope 401, and the two supporting springs c 406 are sleeved outside the two circular mounting shafts b 405, when the worker pulls the protective shielding cover 404 forward, the four solid spheres 305 are first separated from the powder making shell 101, so that the U-shaped movable frame 301 slides out forward, so as to ensure that the U-shaped movable frame 301 will not be forgotten to slide out, and when the worker continues to pull the protective shielding cover 404, the control panel 403 is removed from the protective shielding cover 404.

[0027] The application provides a natural food material preservative flower mushroom meal replacement powder, which comprises flower mushrooms, black sesame seeds, soybeans and bee glue.

[0028] The specific use mode and role of the embodiment are as follows: When the application is used, first, the staff installs the powder making shell 101 on the metal support through the bolt, and when the staff puts the raw material to be crushed, the staff presses the rectangular shielding frame 105 downward, and then pours the raw material into the gap between the rectangular shielding frame 105 and the rectangular auxiliary plate 207. The setting of the rectangular shielding frame 105 plays a sealing effect, avoiding the raw material in the powder making shell 101 from splashing during crushing. When the staff starts the two servo motors 103 through the control panel 403, the staff needs to pull the protective shielding cover 404 forward to ensure that there is a certain safety distance between the staff and the powder making shell 101, reducing the safety hazard. When the staff pulls the protective shielding cover 404 forward, the four solid spheres 305 are first separated from the powder making shell 101, so that the U-shaped movable frame 301 slides out forward, ensuring that the U-shaped movable frame 301 will not be forgotten to slide out. The two inclined protective rods 302 play an isolating role for the staff, avoiding the staff from approaching. When the staff continues to pull the protective shielding cover 404, the control panel 403 is removed from the protective shielding cover 404, and then the two servo motors 103 are started through the control panel 403. When the output shafts of the two servo motors 103 rotate, the two circular powder rollers 102 rotate inward at the same time, playing an automatic crushing effect on the raw material. When the movable collecting box 202 slides downward after the weight increases, the rectangular auxiliary plate 207 can move downward at the same time with the movable collecting box 202, playing a pushing role on the raw material above the two circular powder rollers 102, and assisting to improve the crushing efficiency of the raw material. After the raw material is crushed, the staff pushes the U-shaped movable frame 301 and the two inclined protective rods 302 backward, and when the U-shaped movable frame 301 can drive the two inclined protective rods 302 to reset backward, the two inclined protective rods 302 cannot continue to isolate the staff, facilitating the staff to discharge the crushed powder and add the raw material to be crushed. The setting of the four solid spheres 305 plays an elastic limiting effect on the U-shaped movable frame 301, so that the U-shaped movable frame 301 can be in a stable state after resetting. Then the staff inserts the external powder transfer equipment into the metal support, and the staff removes the circular sealing cover 203, so that the powder in the movable collecting box 202 moves to the external powder transfer equipment.

[0029] In this paper, the following points need attention: 1. The drawings of the embodiments of the present disclosure only relate to the structures involved in the embodiments of the present disclosure, and other structures can refer to the usual design.

[0030] 2. In the case of no conflict, the embodiments of the present disclosure and the features in the embodiments can be combined to obtain new embodiments.

[0031] The above merely describes specific embodiments of the present disclosure, but the protection scope of the present disclosure is not limited thereto, and any person skilled in the art can easily think of changes or replacements within the technical scope disclosed by the present disclosure, which should be covered within the protection scope of the present disclosure. Therefore, the protection scope of the present disclosure should be subject to the protection scope of the claims.

Claims

1. A device for making a meal replacement powder of a natural food material, comprising: The application discloses a powdering mechanism (100), a collection auxiliary part (200), a movable protective part (300) and a driving control part (400), characterized in that the collection auxiliary part (200) is installed on the powdering mechanism (100) and is used for collecting powder after the powdering mechanism (100) is crushed and also used for assisting in improving the powdering efficiency of the powdering mechanism (100); the movable protective part (300) is installed on the powdering mechanism (100) and is used for isolating workers; and the driving control part (400) is installed on the movable protective part (300) and is used for controlling the powdering mechanism (100) and also used for moving the movable protective part (300).

2. The device for making mushroom meal replacement powder with natural food material preservative according to claim 1, characterized in that, The powdering mechanism (100) comprises a powdering shell (101), circular powdering rollers (102), servo motors (103) and circular mounting shafts a (104), the two circular powdering rollers (102) are rotatably installed on the powdering shell (101), the two servo motors (103) are fixedly installed on the left and right sides of the powdering shell (101), and the output shafts of the two servo motors (103) are fixedly connected with the two circular powdering rollers (102), and the four circular mounting shafts a (104) are fixedly installed on the powdering shell (101).

3. The mushroom meal replacement powder according to claim 2, wherein the mushroom meal replacement powder is prepared by the powdering device for preventing the mushroom meal replacement powder from being spoiled by using natural food materials, characterized in that, The powdering mechanism (100) further comprises a rectangular shielding frame (105), circular connecting rings (106) and reset tension springs a (107), the rectangular shielding frame (105) is slidably installed outside the four circular mounting shafts a (104), the four circular connecting rings (106) are fixedly installed at the top ends of the four circular mounting shafts a (104), and the four reset tension springs a (107) are sleeved outside the four circular mounting shafts a (104).

4. The powder-making device for shiitake mushroom meal replacement powder using natural food preservatives as described in claim 3, characterized in that, The collection auxiliary part (200) comprises circular mounting rods (201), movable collection boxes (202), circular sealing covers (203) and supporting springs a (204), the four circular mounting rods (201) are fixedly installed on the powdering shell (101), the movable collection boxes (202) are slidably installed on the four circular mounting rods (201), the circular sealing covers (203) are threadedly connected with the movable collection boxes (202), and the four supporting springs a (204) are sleeved outside the four circular mounting rods (201).

5. The mushroom meal replacement powder according to claim 4, wherein the mushroom meal replacement powder is prepared by the powdering device for preventing the mushroom meal replacement powder from being spoiled by using natural food materials, characterized in that, The collecting auxiliary piece (200) further includes a circular connecting rod (205), a V-shaped mounting rack (206) and a rectangular auxiliary plate (207); the two circular connecting rods (205) are fixedly installed on the top of the movable collecting box (202); the V-shaped mounting rack (206) is fixedly installed on the top of the two circular connecting rods (205); the rectangular auxiliary plate (207) is fixedly installed on the bottom of the V-shaped mounting rack (206), and the rectangular auxiliary plate (207) is located inside the rectangular shielding frame (105).

6. The mushroom meal replacement powder according to claim 2, wherein the mushroom meal replacement powder is prepared by the powdering device for preventing the mushroom meal replacement powder from being spoiled by using natural food materials, characterized in that, The movable protection piece (300) includes a U-shaped movable rack (301), an inclined protection rod (302) and a connecting flat plate (303); the U-shaped movable rack (301) is slidingly installed on the powder milling shell (101); the two inclined protection rods (302) are fixedly installed on the left and right sides of the U-shaped movable rack (301); and the connecting flat plate (303) is fixedly installed on the outside of the U-shaped movable rack (301).

7. The mushroom meal replacement powder according to claim 6, wherein the mushroom meal replacement powder is prepared by the powdering device for preventing spoilage of natural food materials, characterized in that, The movable protection piece (300) further includes a reset tension spring b (304), a solid sphere (305) and a supporting spring b (306); the two reset tension springs b (304) are sleeved on the outside of the U-shaped movable rack (301); the front ends of the two reset tension springs b (304) are fixedly connected with the powder milling shell (101), and the rear ends of the two reset tension springs b (304) are fixedly connected with the connecting flat plate (303); the four solid spheres (305) are slidingly installed on the U-shaped movable rack (301) and are in contact with the powder milling shell (101); and the two supporting springs b (306) are installed in the inside of the U-shaped movable rack (301), with the left supporting spring b (306) located between the two solid spheres (305) on the left and the right supporting spring b (306) located between the two solid spheres (305) on the right.

8. The mushroom meal replacement powder according to claim 6, wherein the mushroom meal replacement powder is prepared by the powdering device for preventing the mushroom meal replacement powder from being spoiled by using natural food materials. The driving control piece (400) includes a steel wire rope (401), a rectangular mounting frame (402) and a control panel (403); the top end of the steel wire rope (401) is connected with the U-shaped movable rack (301); the rectangular mounting frame (402) is fixedly installed on the bottom end of the steel wire rope (401); and the control panel (403) is fixedly installed on the rectangular mounting frame (402) and is electrically connected with the two servo motors (103).

9. The mushroom meal replacement powder according to claim 8, wherein the mushroom meal replacement powder is prepared by the powdering device for preventing the mushroom meal replacement powder from being spoiled by using natural food materials, characterized in that, The drive control piece (400) further includes a protective shield cover (404), a circular mounting shaft b (405) and a supporting spring c (406); the protective shield cover (404) is slidingly installed outside the rectangular mounting frame (402); the circular mounting shaft b (405) is provided with two, and the two circular mounting shafts b (405) are fixedly installed on the protective shield cover (404) and slidingly connected with the rectangular mounting frame (402); the supporting spring c (406) is provided with two, and the two supporting springs c (406) are sleeved outside the two circular mounting shafts b (405).

10. A natural food material preservative mushroom meal replacement powder, comprising: Morchella, black sesame, soybean and propolis; The Morchella meal replacement powder is prepared by using the natural food material preservative device according to any one of claims 1-9.