A kitchen waste crushing processor with stable rotation

The stable rotating kitchen waste grinder addresses clogging issues through a self-adjusting mechanism and dual-scrapper system, ensuring automatic blockage clearance and efficient waste discharge.

CN119972302BActive Publication Date: 2025-07-15SHENZHEN FUYUBAO KITCHEN EQUIP CO LTD
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Patent Information

Application Number
CN202510454459.7
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-04-11
Publication Date
2025-07-15
Estimated Expiration
2045-04-11

AI Technical Summary

Technical Problem

During use, existing kitchen waste crushing processors are prone to blocking the feed port due to accumulation of kitchen waste, which requires manual clearance and inconvenient operation.

Method used

Using a stable rotating feeding structure and dual scraping mechanism, the automatic lifting and lowering of the feeding rod and the rotational movement of the scraper can automatically move and discharge kitchen waste to avoid blockage.

Benefits of technology

It realizes automatic toggling and discharge of kitchen waste, improves the convenience of the device, avoids manual dredging, and ensures the normal operation of the device.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a kitchen waste crushing and disposing device with stable rotation, which relates to the field of kitchen waste treatment, and comprises a shell, a motor and a rotating shaft, wherein the motor is installed in the shell, the rotating shaft is fixed on the output shaft of the motor, the rotating shaft bearing is connected to the shell, and a horizontal plate is fixed in the shell. The kitchen waste crushing and disposing device with stable rotation adopts a material shifting structure, and the kitchen waste shifting effect can be realized by the automatic lifting of the material shifting structure during the use of the device, thereby avoiding the kitchen waste from blocking the feed inlet and improving the convenience of the device operation. Specifically, when the adjusting ring rotates, the sliding effect between the spherical shaft and the adjusting ring is cooperated, so that the sliding part can move up and down in an orderly manner, and the action of the push rod is cooperated, so that the movable rod moves in the opposite direction relative to the sliding part, and the action of the pressing rod and the stopper is cooperated, so that the material shifting rod can rotate when it moves up, and the material shifting rod is kept in a horizontal state to shift the material when it moves down.
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Description

Technical Field

[0001] The present invention relates to the technical field of kitchen waste treatment, and particularly to a kitchen waste crushing processor with stable rotation. Background Technique

[0002] Kitchen waste refers to the defective products or food residues remaining after food processing in residents' daily life, including discarded vegetable leaves, leftovers, rice, fruit peels, eggshells, tea dregs, bones, etc. Since kitchen waste contains extremely high moisture and organic matter, it is very easy to rot and produce a foul smell, and directly discharging it into the sewer is likely to cause problems such as sewer blockage. To facilitate the treatment of kitchen waste, at present, a kitchen waste crushing processor is usually used to pulp the kitchen waste and then discharge it into the sewer.

[0003] In the actual use process of the existing kitchen waste crushing processor, the kitchen waste entering the processor is mainly pulped by a crushing device. However, since the kitchen waste is likely to accumulate and block at the feed inlet of the processor, manual pressing or other means are required for dredging, and the overall operation is rather troublesome. Therefore, in view of the above problems, a kitchen waste crushing processor with stable rotation is designed to better meet the actual use requirements. Summary of the Invention

[0004] The purpose of the present invention is to provide a kitchen waste crushing processor with stable rotation to solve the problems raised in the above background technique.

[0005] To achieve the above object, the present invention provides the following technical solution: A kitchen waste crushing processor with stable rotation, including a housing, a motor and a rotating shaft. A motor is installed inside the housing, a rotating shaft is fixed on the output shaft of the motor, the rotating shaft is connected to the housing through bearings, a cross plate is fixed inside the housing, a crushing mechanism is fixed on the rotating shaft, a feeding mechanism is connected to the crushing mechanism, and a cleaning mechanism is also fixed on the rotating shaft. The feeding mechanism includes an adjusting ring, a sliding member, a spherical shaft, a first magnet, a feeding rod, a stop block, a movable rod, a pressing rod, a disc, a second magnet and a top rod. The adjusting ring and the sliding member are slidably connected, and the sliding member and the cross plate are slidably connected. Spherical shafts are symmetrically fixed on the left and right sides of the sliding member, and the spherical shafts are nested in the grooves on the upper end face of the adjusting ring for sliding. Two first magnets are fixed inside the sliding member. A feeding rod is rotatably connected to the upper end of the sliding member, and a torsion spring is connected between the feeding rod and the sliding member. The surface of the feeding rod is rough. The feeding rod contacts the stop block for positioning. A movable rod is slidably connected inside the sliding member. A pressing rod is fixed on the movable rod, and the pressing rod and the feeding rod are distributed in a one-to-one correspondence. A disc is also fixed on the movable rod. Second magnets are symmetrically fixed on the upper and lower sides of the disc, and the second magnets and the first magnets form a magnetic attraction connection. Top rods are symmetrically fixed on the left and right sides of the disc, and the top rods are slidably connected to the sliding member. The top rods are located below the cross plate. When the adjusting ring rotates, with the sliding action between the spherical shaft and the adjusting ring, the sliding member can move up and down orderly. With the action of the top rod, the movable rod moves in the opposite direction relative to the sliding member. With the action of the pressing rod and the stop block, the feeding rod can rotate when moving up and keep horizontal when moving down for feeding.

[0006] Preferably, a partition is fixed inside the housing, and the partition is connected to the rotating shaft through bearings. A guide chute is fixed on the lower side of the opening of the partition, and the guide chute is connected to a slag discharge pipe. The slag discharge pipe is fixed on the housing. Through the above structure, it is convenient to discharge the pulped kitchen waste.

[0007] Preferably, an arc-shaped block is fixed inside the housing, and the arc-shaped block is arranged directly above the opening of the partition. Through the action of the arc-shaped block, it can provide a basic guarantee for the discharge of the pulped kitchen waste on the partition.

[0008] Preferably, a charging interface is installed on the housing, and a control switch is installed on the housing. The control switch and the charging interface are both electrically connected to the motor. Through the above structure, the device can be powered and controlled to ensure the normal operation of the device.

[0009] Preferably, the crushing mechanism includes a rotating plate, a striking block, an annular frame, crushing teeth, a slag discharge port and a retaining ring. The rotating plate is fixed on the rotating shaft, and the striking blocks are fixed on the rotating plate at equal angles. The distance between the rotating plate and the lower end surface of the movable rod is equal to the height of the arc-shaped convex surface on the adjusting ring. At the same time, the rotating plate is fixedly connected to the adjusting ring. By driving the striking blocks to rotate with the rotating plate, the primary crushing effect of kitchen waste can be achieved.

[0010] Preferably, the annular frame is fixed inside the housing, and the distance between the outer wall of the annular frame and the inner wall of the housing is 2 cm - 4 cm. The crushing teeth are evenly fixed on the inner wall of the annular frame. At the same time, the slag discharge ports are evenly arranged on the annular frame. Through the action of the crushing teeth, the secondary crushing effect on kitchen waste can be carried out. With the cooperation of the slag discharge ports, it is convenient for the crushed and pulped kitchen waste to be discharged.

[0011] Preferably, a retaining ring with an inclined cross-section is arranged above the annular frame, and the retaining ring is fixed inside the housing. Through the action of the retaining ring, it can prevent the uncrushed and pulped kitchen waste from falling through the gap between the annular frame and the housing, ensuring the normal operation of the device.

[0012] Preferably, the cleaning mechanism includes a first scraper, a second scraper, a vertical rod, a fixed block, a spring and a convex shaft. The first scraper is fixed on the rotating shaft, and the first scraper is in sliding contact with the partition board. The second scraper is slidably connected to the outside of the first scraper. Through the first scraper, the pulped kitchen waste on the partition board can be slid to facilitate the discharge of the pulped kitchen waste. With the cooperation of the second scraper, the pulped kitchen waste adhered to the first scraper can be scraped off.

[0013] Preferably, a vertical rod is fixed on the second scraper, and the vertical rod is slidably connected to the first scraper. The upper end of the vertical rod is fixed on the fixed block. When the second scraper moves, through the sliding guiding action between the vertical rod and the first scraper, the stability of the movement of the second scraper can be ensured.

[0014] Preferably, a spring is fixed between the fixed block and the first scraper, and a convex shaft is fixed on the fixed block. The convex shaft is slidably connected to the arc-shaped block. Through the sliding action between the convex shaft and the arc-shaped block, the basic acting force for the movement of the second scraper can be provided. With the elastic action of the spring, the basic guarantee for the automatic reset of the second scraper can be provided.

[0015] Compared with the prior art, the beneficial effects of the present invention are:

[0016] 1. The kitchen waste crushing processor with stable rotation adopts a material-dividing structure, which can realize the diverting effect of kitchen waste through the automatic lifting of the material-dividing structure during the use of the device, thereby preventing the kitchen waste from blocking the feed inlet and improving the convenience of device operation. Specifically, the adjusting ring is rotated to cooperate with the sliding effect between the spherical shaft and the adjusting ring, so that the sliding member can move up and down in an orderly manner, thereby driving the material-dividing rod to move. When the material-dividing rod moves up, the material-dividing rod can rotate counterclockwise to make the material-dividing rod in an inclined state. When the material-dividing rod moves up to the limit position, the material-dividing rod is in a horizontal state through the action of the pressure rod, the disc, the movable rod and the top rod. When the material-dividing rod moves down, the material-dividing rod can keep moving down horizontally with the limiting effect of the stopper, so that the kitchen waste blocked by the feed inlet can be dialed downward without manual operation, thereby improving the convenience of use of the device.

[0017] 2. The stably rotating kitchen waste crushing processor adopts a double scraping mechanism, which can scrape and collect the pulped kitchen waste, so that the pulped kitchen waste can be smoothly discharged into the sewer through the material guide trough and the slag discharge pipe. Specifically, when the pulped kitchen waste falls onto the partition, the first scraper is driven to rotate by the motor and the rotating shaft to scrape the pulped kitchen waste on the partition. When the pulped kitchen waste moves to above the material guide trough, the pulped kitchen waste automatically falls under the action of gravity and is discharged outward through the material guide trough and the slag discharge pipe. When the first scraper rotates to just above the material guide trough, the second scraper can be moved in cooperation with the arc block, the convex shaft, the fixed block and the vertical rod, thereby scraping off the pulped kitchen waste adhered to the first scraper to ensure the cleanliness of the first scraper. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 It is a schematic diagram of the overall front view cross-section of the device of the present invention;

[0019] Figure 2 It is a schematic diagram of the overall three-dimensional structure of the device of the present invention;

[0020] Figure 3 It is a schematic diagram of the overall sectional three-dimensional structure of the device of the present invention when viewed from above;

[0021] Figure 4 It is a schematic diagram of the front view cross-section of the three-dimensional structure of the crushing mechanism of the present invention;

[0022] Figure 5 It is a schematic diagram of the front view cross-section of the three-dimensional structure of the material shifting mechanism of the present invention;

[0023] Figure 6 It is a partially enlarged front view cross-sectional three-dimensional structural schematic diagram of the material shifting mechanism of the present invention;

[0024] Figure 7This is a schematic three-dimensional structure diagram of the cleaning mechanism of the present invention.

[0025] In the figure: 1. Outer shell; 101. Partition board; 102. Feeding chute; 103. Slag discharge pipe; 104. Arc-shaped block; 105. Charging interface; 106. Control switch; 2. Motor; 3. Rotating shaft; 4. Crushing mechanism; 401. Rotating plate; 402. Striking block; 403. Ring-shaped frame; 404. Crushing teeth; 405. Slag discharge port; 406. Retaining ring; 5. Material feeding mechanism; 501. Adjusting ring; 502. Sliding part; 503. Spherical shaft; 504. First magnet; 505. Material feeding rod; 506. Stopper; 507. Moving rod; 508. Pressing rod; 509. Disk; 510. Second magnet; 511. Thrust rod; 6. Cleaning mechanism; 601. First scraper; 602. Second scraper; 603. Vertical rod; 604. Fixed block; 605. Spring; 606. Convex shaft; 7. Horizontal plate. Specific embodiments

[0026] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0027] Please refer to Figures 1 - 7 , the present invention provides a technical solution: a kitchen waste crushing processor with stable rotation, including an outer shell 1, a motor 2 and a rotating shaft 3. A motor 2 is installed inside the outer shell 1, a rotating shaft 3 is fixed on the output shaft of the motor 2, the rotating shaft 3 is connected to the outer shell 1 through a bearing, a horizontal plate 7 is fixed inside the outer shell 1, a crushing mechanism 4 is fixed on the rotating shaft 3, a material feeding mechanism 5 is connected to the crushing mechanism 4, and a cleaning mechanism 6 is also fixed on the rotating shaft 3.

[0028] A partition plate 101 is fixed inside the housing 1, and the partition plate 101 is connected to the rotating shaft 3 by a bearing. A material guide groove 102 is fixed to the lower side of the opening on the partition plate 101. At the same time, the material guide groove 102 is connected to the slag discharge pipe 103, and the slag discharge pipe 103 is fixed to the housing 1. A charging interface 105 is installed on the housing 1, and a control switch 106 is installed on the housing 1. Both the control switch 106 and the charging interface 105 are electrically connected to the motor 2. The crushing mechanism 4 includes a rotating plate 401, a striking block 402, an annular frame 403, crushing teeth 404, a slag discharge port 405, and a retaining ring 406. The rotating plate 401 is fixed to the rotating shaft 3, and striking blocks 402 are fixed to the rotating plate 401 at equal angles. The distance between the lower end surface of the rotating plate 401 and the movable rod 507 is equal to the height of the arc-shaped convex surface on the adjusting ring 501. At the same time, the rotating plate 401 is fixedly connected to the adjusting ring 501. The annular frame 403 is fixed inside the housing 1, and the distance between the outer wall of the annular frame 403 and the inner wall of the housing 1 is 2 cm - 4 cm. Crushing teeth 404 are evenly fixed on the inner wall of the annular frame 403. At the same time, slag discharge ports 405 are evenly opened on the annular frame 403. A retaining ring 406 with an inclined cross-section is arranged above the annular frame 403, and the retaining ring 406 is fixed inside the housing 1.

[0029] When using this stable-rotating kitchen waste crushing processor, as Figures 1 - 7 shown, first, control the motor 2 to start through the control switch 106. Drive the rotating shaft 3 and the rotating plate 401 to rotate through the motor 2. Then, put the kitchen waste and water into the housing 1 through the upper feeding port of the housing 1. At this time, the kitchen waste falls onto the rotating plate 401. Under the action of the rotational centrifugal force of the rotating plate 401 and the striking block 402, the primary crushing of the kitchen waste can be realized. And when the kitchen waste contacts the crushing teeth 404 under the action of the rotational centrifugal force of the rotating plate 401, the secondary crushing of the kitchen waste can be realized until the kitchen waste is crushed into a pulp state. At this time, the pulp-state kitchen waste is discharged through the slag discharge port 405 on the annular frame 403 and falls onto the partition plate 101, thereby realizing the crushing and pulping of the kitchen waste.

[0030] An arc-shaped block 104 is fixed inside the outer shell 1, and the arc-shaped block 104 is located directly above the opening on the partition plate 101; the cleaning mechanism 6 includes a first scraper 601, a second scraper 602, a vertical rod 603, a fixing block 604, a spring 605 and a convex shaft 606. The first scraper 601 is fixed on the rotating shaft 3, and the first scraper 601 is in contact with and slides on the partition plate 101, and a second scraper 602 is slidably connected to the outside of the first scraper 601; a vertical rod 603 is fixed on the second scraper 602, and the vertical rod 603 is slidably connected to the first scraper 601, and the upper end of the vertical rod 603 is fixed on the fixing block 604; a spring 605 is fixed between the fixing block 604 and the first scraper 601, and a convex shaft 606 is fixed on the fixing block 604, and the convex shaft 606 is slidably connected to the arc-shaped block 104;

[0031] When the kitchen waste in the pulping state falls onto the partition plate 101, as Figures 1 - 7 shown, the rotation of the rotating shaft 3 can drive the first scraper 601 to rotate synchronously. Through the sliding action between the first scraper 601 and the partition plate 101, the pulping kitchen waste on the partition plate 101 can be pushed to move until the pulping kitchen waste is discharged into the sewer through the material guiding groove 102 and the slag discharging pipe 103. Moreover, during the rotation of the first scraper 601, the second scraper 602 and the convex shaft 606 are driven to rotate synchronously. When the convex shaft 606 is in contact with and slides on the arc-shaped block 104, at this time, the first scraper 601 is exactly located above the material guiding groove 102. And through the contact and sliding action between the convex shaft 606 and the arc-shaped block 104, the fixing block 604, the vertical rod 603 and the second scraper 602 move downward. Cooperating with the sliding action between the second scraper 602 and the first scraper 601, the pulping kitchen waste adhered to the first scraper 601 can be scraped off to ensure the cleanliness of the surface of the first scraper 601;

[0032] The material feeding mechanism 5 includes an adjusting ring 501, a sliding member 502, a spherical shaft 503, a first magnet 504, a material feeding rod 505, a stop block 506, a movable rod 507, a pressing rod 508, a disc 509, a second magnet 510 and a jacking rod 511. There is a sliding connection between the adjusting ring 501 and the sliding member 502, and there is also a sliding connection between the sliding member 502 and the cross plate 7. Spherical shafts 503 are symmetrically fixed on the left and right of the sliding member 502, and the spherical shafts 503 are nested in the grooves on the upper end surface of the adjusting ring 501 for sliding. Two first magnets 504 are fixed inside the sliding member 502. A material feeding rod 505 is rotatably connected to the upper end of the sliding member 502, and a torsion spring is connected between the material feeding rod 505 and the sliding member 502. Moreover, the surface of the material feeding rod 505 is of a rough structure. The material feeding rod 505 contacts the stop block 506 to achieve positioning. A movable rod 507 is slidably connected inside the sliding member 502. A pressing rod 508 is fixed on the movable rod 507, and the pressing rod 508 and the material feeding rod 505 are distributed in a one-to-one correspondence. A disc 509 is also fixed on the movable rod 507. Second magnets 510 are symmetrically fixed on the upper and lower sides of the disc 509, and the second magnets 510 and the first magnets 504 form a magnetic attraction connection. Jacking rods 511 are symmetrically fixed on the left and right of the disc 509, and the jacking rods 511 are slidably connected to the sliding member 502, and the jacking rods 511 are located below the cross plate 7;

[0033] During the operation of the device, such as Figures 1 - 7As shown, when the upper feed port of the housing 1 is blocked due to the accumulation of kitchen waste, the rotation of the rotating plate 401 can synchronously drive the adjusting ring 501 to rotate. With the sliding action between the adjusting ring 501 and the spherical shaft 503, the sliding member 502 can move up and down orderly. Taking the sliding member 502 being at the lowest side as an example, at this time, the second magnet 510 above the disc 509 is in an adsorbed state with the upper first magnet 504, and the upper end of the ejector rod 511 contacts the lower end surface of the cross plate 7. When the adjusting ring 501 rotates and the spherical shaft 503 slides in the arc-shaped groove on the upper surface of the adjusting ring 501, at this time, the sliding member 502 is forced to slide upward. With the sliding guiding action between the sliding member 502 and the cross plate 7, the stability of the movement of the sliding member 502 can be ensured. The sliding member 502 moves upward and synchronously drives the feeding rod 505 to move. At this time, since the feeding rod 505 is not restricted, the feeding rod 505 can rotate counterclockwise by a certain angle, making the feeding rod 505 in an inclined state, which is convenient for the feeding rod 505 to move upward into the blocked kitchen waste. When the sliding member 502 moves upward, at this time, due to the upper end of the ejector rod 511 contacting the lower end surface of the cross plate 7 to achieve limiting, the ejector rod 511 slides downward relative to the ejector rod 511, synchronously driving the movable rod 507 and the pressing rod 508 to move downward. At this time, the second magnet 510 above the disc 509 is separated from the upper first magnet 504. During the downward movement of the pressing rod 508, when the pressing rod 508 contacts the feeding rod 505, since the feeding rod 505 is in an inclined state and the pressing rod 508 moves downward relative to the feeding rod 505, the pressing rod 508 generates a force on the feeding rod 505, causing the feeding rod 505 to rotate in the reverse direction until the sliding member 502 and the feeding rod 505 move upward to the limit position. At this time, under the action of the feeding rod 505, the feeding rod 505 is reset to the horizontal state, and the horizontal feeding rod 505 abuts against the stop block 506. And at this time, the second magnet 510 below the disc 509 is adsorbed with the lower first magnet 504, and at the same time, the lower end surface of the movable rod 507 contacts the rotating plate 401. When the sliding member 502 and the feeding rod 505 move downward from the uppermost position, due to the stop block 506 limiting the feeding rod 505, the feeding rod 505 cannot rotate. At this time, since the feeding rod 505 is inserted into the kitchen waste, the downward movement of the feeding rod 505 can drive the blocked kitchen waste to move downward, thereby realizing the automatic dredging of the upper feed port of the housing 1 and effectively avoiding the blockage of the upper feed port of the housing 1 from affecting the normal operation of the device. This is the working principle of the stable rotating kitchen waste crushing processor.

[0034] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principles and spirits of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A kitchen waste crushing processor with stable rotation, comprising a housing (1), a motor (2) and a rotating shaft (3). The motor (2) is installed inside the housing (1), a rotating shaft (3) is fixed on the output shaft of the motor (2), and the rotating shaft (3) is connected to the housing (1) through bearings. It is characterized in that: A cross plate (7) is fixedly installed inside the outer shell (1), a crushing mechanism (4) is fixedly installed on the rotating shaft (3), a feeding mechanism (5) is connected to the crushing mechanism (4), a cleaning mechanism (6) is also fixedly installed on the rotating shaft (3), the feeding mechanism (5) includes an adjusting ring (501), a sliding member (502), a spherical shaft (503), a first magnet (504), a feeding rod (505), a stop block (506), a movable rod (507), a pressing rod (508), a disc (509), a second magnet (510) and a ejector rod (511). The adjusting ring (501) is slidably connected to the sliding member (502), and the sliding member (502) is slidably connected to the cross plate (7). The spherical shafts (503) are symmetrically and fixedly installed on the left and right sides of the sliding member (502), and the spherical shafts (503) are nested in the grooves on the upper end surface of the adjusting ring (501) for sliding. Two first magnets (504) are fixedly installed inside the sliding member (502). The feeding rod (505) is rotatably connected to the upper end of the sliding member (502), and a torsion spring is connected between the feeding rod (505) and the sliding member (502). The surface of the feeding rod (505) has a rough structure. The feeding rod (505) contacts the stop block (506) to achieve positioning. The movable rod (507) is slidably connected inside the sliding member (502). A pressing rod (508) is fixedly installed on the movable rod (507), and the pressing rod (508) and the feeding rod (505) are distributed in a one-to-one correspondence. A disc (509) is also fixedly installed on the movable rod (507). The second magnets (510) are symmetrically and fixedly installed on the upper and lower sides of the disc (509), and the second magnets (510) and the first magnets (504) form a magnetic attraction connection. The ejector rods (511) are symmetrically and fixedly installed on the left and right sides of the disc (509), and the ejector rods (511) are slidably connected to the sliding member (502). The ejector rods (511) are located below the cross plate (7). When the adjusting ring (501) rotates, with the sliding action between the spherical shafts (503) and the adjusting ring (501), the sliding member (502) can move up and down orderly; The cleaning mechanism (6) includes a first scraping plate (601), a second scraping plate (602), a vertical rod (603), a fixing block (604), a spring (605) and a convex shaft (606). The first scraping plate (601) is fixedly installed on the rotating shaft (3), and the first scraping plate (601) contacts and slides with the partition plate (101). The second scraping plate (602) is slidably connected to the outside of the first scraping plate (601). The vertical rod (603) is fixedly installed on the second scraping plate (602), and the vertical rod (603) is slidably connected to the first scraping plate (601). The upper end of the vertical rod (603) is fixedly installed on the fixing block (604). The spring (605) is fixedly installed between the fixing block (604) and the first scraping plate (601). The convex shaft (606) is fixedly installed on the fixing block (604), and the convex shaft (606) is slidably connected to the arc-shaped block (104).

2. A kitchen waste crushing processor with stable rotation according to claim 1, characterized in that: A partition plate (101) is fixedly installed inside the outer shell (1), and the partition plate (101) is connected to the rotating shaft (3) by bearings. A material guiding groove (102) is fixedly installed on the lower side of the opening of the partition plate (101), and the material guiding groove (102) is connected to the slag discharge pipe (103). The slag discharge pipe (103) is fixedly installed on the outer shell (1).

3. A kitchen waste crushing processor with stable rotation according to claim 1, characterized in that: An arc-shaped block (104) is fixedly installed inside the outer shell (1), and the arc-shaped block (104) is arranged directly above the opening of the partition plate (101).

4. A kitchen waste crushing processor with stable rotation according to claim 1, characterized in that: A charging interface (105) is installed on the outer shell (1), and a control switch (106) is installed on the outer shell (1). Both the control switch (106) and the charging interface (105) are electrically connected to the motor (2).

5. A kitchen waste crushing processor with stable rotation according to claim 1, characterized in that: The crushing mechanism (4) includes a rotating plate (401), a striking block (402), an annular frame (403), crushing teeth (404), a slag discharge port (405), and a retaining ring (406). The rotating plate (401) is fixedly installed on the rotating shaft (3), and the striking blocks (402) are fixedly installed on the rotating plate (401) at equal angles. The distance between the lower end surface of the rotating plate (401) and the movable rod (507) is equal to the height of the arc-shaped convex surface on the adjusting ring (501). At the same time, the rotating plate (401) is fixedly connected to the adjusting ring (501).

6. A kitchen waste crushing processor with stable rotation according to claim 5, characterized in that: The annular frame (403) is fixedly installed inside the outer shell (1), and the distance between the outer wall of the annular frame (403) and the inner wall of the outer shell (1) is 2 cm - 4 cm. The crushing teeth (404) are evenly fixedly installed on the inner wall of the annular frame (403), and the slag discharge ports (405) are evenly opened on the annular frame (403).

7. A kitchen waste crushing processor with stable rotation according to claim 5, characterized in that: A retaining ring (406) with an inclined cross-section is arranged above the annular frame (403), and the retaining ring (406) is fixedly installed inside the outer shell (1).

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