White glutinous rice sorting device
By setting up a vacuum cleaner head and dust collection mechanism in the white glutinous rice sorting device, the problem of dust dissipation during the glutinous rice screening process is solved, and a cleaner production environment and a more efficient screening process is achieved.
Patent Information
- Application Number
- CN202421587217.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-05
- Publication Date
- 2025-05-30
- Estimated Expiration
- 2034-07-05
AI Technical Summary
During the glutinous rice screening process, existing automatic rice grain screening machines will generate a large amount of dust, resulting in environmental pollution, equipment damage and health risks.
A white glutinous rice sorting device is designed, including a feeding mechanism, a screening mechanism, a sorting mechanism, a limiting mechanism and a dust collection mechanism. By setting a vacuum head between the sorting mechanisms, dust generated during the screening process is adsorbed, and dust is collected and processed through the dust collection mechanism.
It effectively reduces the dissipation of dust, reduces pollution to the production site environment, reduces the potential damage of dust to equipment, products and staff, and improves screening efficiency.
Smart Images

Figure CN222919046U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of rice processing, in particular to a white glutinous rice sorting device. Background Technique
[0002] Glutinous rice is thin in shape and is one of the commonly consumed grains in daily life. It is called glutinous rice in the south of China and more commonly called sticky rice in the north. Glutinous rice has a fragrant and glutinous taste and is often made into flavored snacks. The common types of glutinous rice are black glutinous rice and white glutinous rice.
[0003] An existing patent with the publication number CN219377897U discloses a rice grain automatic screening machine, which includes a housing. An installation groove is opened on the upper side of the housing. A first screening mesh plate and a collection box are arranged inside the housing. The collection box is arranged below the first screening mesh plate. A reciprocating mechanism is arranged on the upper side of the housing, and a driving mechanism is arranged inside the housing at the installation groove. For the rice grain automatic screening machine of the present utility model, the driving mechanism drives the reciprocating mechanism to perform reciprocating motion, and then the glutinous rice inside is screened by the first screening mesh plate. The reciprocating motion has less destructive force and impact force on the glutinous rice itself compared with the traditional up and down vibration, and the glutinous rice will not be broken during the reciprocating motion screening process, so that almost no waste will be generated during the screening process of the rice grains.
[0004] However, in the above technical solution, during the screening and sorting process of glutinous rice, a large amount of dust will be generated inside the device when the powder attached to the surface of the glutinous rice falls off during the shaking of the device. These generated dusts will escape from the side of the device and affect the on-site environment, cause potential damage to the equipment and affect the health of the staff.
[0005] Therefore, a white glutinous rice sorting device is proposed. Content of the Utility Model
[0006] The purpose of the present utility model is to provide a white glutinous rice sorting device to solve the problems raised in the above background technique.
[0007] The present utility model specifically adopts the following technical solutions to achieve the above purpose:
[0008] A white glutinous rice sorting device, comprising a box body, wherein a feeding mechanism for feeding control is arranged at the top of the box body, a screening mechanism for swinging and screening is arranged at the bottom of the box body, and a sorting mechanism for sorting glutinous rice is connected to the screening mechanism located inside the box body.A limiting mechanism for limiting the sorting mechanism is provided on one side of the sorting mechanism. A dust collection mechanism for absorbing dust is provided on one side of the box body. One side of the dust collection mechanism is connected to the sorting mechanism located inside the box body. The screening mechanism includes an installation groove and a motor. The installation groove is opened on the inner bottom wall of the box body. The number of the installation grooves is two groups and they are symmetrically arranged. The motor is fixedly installed at the center of the bottom of the box body. The output end of the motor penetrates the side wall of the box body and is fixedly connected with an eccentric wheel. First sliding rods are fixedly installed in the two groups of installation grooves. Fixed blocks are fixedly installed on the inner bottom wall of the box body above the installation grooves. The number of the fixed blocks is two groups and they are symmetrically arranged. Second sliding rods are slidably arranged on the fixed blocks. First sliders and second sliders are respectively slidably arranged on the first sliding rods on both sides of the fixed blocks. The two ends of the second sliding rod are fixedly connected to the side walls of the first slider and the second slider respectively. A first spring is sleeved on the second sliding rod between the corresponding side walls of the fixed block and the second slider. The second slider is arranged on the side close to the eccentric wheel. The sorting mechanism includes a sieve frame. The sieve frame is fixedly installed on the tops of the two groups of first sliders and second sliders. Third sliding rods are fixedly arranged on the inner side walls of both sides in the box body. Third sliders are slidably arranged on the third sliding rods. One side wall of the third slider is fixedly connected to the sieve frame. Multiple sorting boxes and collection boxes are slidably arranged on the sieve frame. Screening meshes are placed in the sorting boxes. The limiting mechanism includes a hexagonal column. The hexagonal column is fixedly installed on one side wall of the sieve frame between the two groups of sorting boxes. A T-shaped column is fixedly arranged on one side wall of the hexagonal column. A limiting rod is movably sleeved on the hexagonal column and the T-shaped column. A polygonal groove is opened on the limiting rod. The size of the polygonal groove is adapted to the hexagonal column. A second spring is sleeved between the corresponding side walls of the T-shaped column and the limiting rod on the T-shaped column. The size of the hexagonal column is larger than that of the T-shaped column. The dust collection mechanism includes a ventilation branch pipe, a dust suction head and a dust suction machine. The number of the dust suction heads is multiple groups. The dust suction heads are fixedly installed on one side wall of the sieve frame between the two groups of sorting boxes. The ventilation branch pipe is fixedly installed on one outer side wall of the box body and extends into the box body. A corrugated pipe is connected between the dust suction head and the ventilation branch pipe. The dust suction machine is fixedly installed on one outer side wall of the box body. One end of the ventilation branch pipe is connected to the dust suction machine. A collection box is fixedly arranged on one outer side wall of the box body on the side of the dust suction machine. An inclined baffle is fixedly arranged in the collection box. A dust collection box is slidably arranged on the inner bottom of the collection box. A dust collection bag is arranged on one side of the collection box. Connecting pipes are respectively connected between the collection box and the dust suction machine and the dust collection bag. A cabinet door is hingedly installed on the collection box.,
[0009] Further, the feeding mechanism includes a feeding port fixedly installed at the top of the box body. An insertion slot is provided in the feeding port, and a pulling plate is slidably arranged in the insertion slot.
[0010] The beneficial effects of the present utility model are as follows:
[0011] 1. In the present utility model, the dust suction head provided between the two screening boxes directly sucks the dust generated between the two screening boxes during screening. It can effectively suck the dust generated by glutinous rice during the screening process in the sorting mechanism, reduce the escape of dust, reduce the pollution to the production site environment, and also reduce the potential damage of dust to equipment, products and staff. The larger impurities are blocked by the inclined baffle arranged in the collection box and fall into the lower dust collection box, while the lighter dust is discharged into the dust collection bag through the connecting pipe, which is convenient for the operator to conduct centralized treatment and avoid blocking the dust collection bag by larger sundries. At the same time, through the integrated setting of the sorting mechanism, it is convenient for the dust collection mechanism to suck the dust generated inside, significantly improving the screening efficiency, reducing the escape of dust, and further reducing the impact on the production site environment and the health of staff. Description of the Drawings
[0012] Figure 1 is the three-dimensional structural schematic diagram of the present utility model;
[0013] Figure 2 is the side sectional structural schematic diagram of the present utility model;
[0014] Figure 3 is the structural schematic diagram of the dust collection mechanism, screening mechanism and sorting mechanism of the present utility model;
[0015] Figure 4 is the enlarged structural schematic diagram of A of the present utility model;
[0016] Reference Signs: 1. Box Body; 2. Dust Collection Mechanism; 201. Ventilation Branch Pipe; 202. Dust Suction Head; 203. Bellows; 204. Dust Suction Machine; 205. Inclined Baffle; 206. Connecting Pipe; 207. Dust Collection Bag; 208. Dust Collection Box; 209. Cabinet Door; 2010. Collection Box; 3. Feeding Mechanism; 301. Feeding Port; 302. Pulling Plate; 303. Insertion Slot; 4. Screening Mechanism; 401. Installation Slot; 402. Motor; 403. First Slide Block; 404. First Slide Rod; 405. Second Slide Rod; 406. Fixed Block; 407. First Spring; 408. Second Slide Block; 409. Eccentric Wheel; 5. Sorting Mechanism; 501. Screening Box; 502. Screening Mesh; 503. Third Slide Rod; 504. Third Slide Block; 505. Screening Frame; 506. Collection Box; 6. Limiting Mechanism; 601. Hexagonal Column; 602. Limiting Rod; 603. Second Spring; 604. Polygonal Groove; 605. T-shaped Column. Detailed implementation manners
[0017] To make the objectives, technical solutions and advantages of the embodiments of the present utility model clearer, the technical solutions in the embodiments of the present utility model will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are some but not all of the embodiments of the present utility model. The components of the embodiments of the present utility model usually described and illustrated in the accompanying drawings here can be arranged and designed in various different configurations.
[0018] Therefore, the detailed description of the embodiments of the present utility model provided in the accompanying drawings is not intended to limit the scope of the claimed present utility model, but merely represents selected embodiments of the present utility model. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present utility model without creative efforts fall within the scope of protection of the present utility model.
[0019] It should be noted that: similar reference numerals and letters denote similar items in the following drawings. Therefore, once an item is defined in one drawing, it does not need to be further defined and explained in subsequent drawings. In addition, the terms "first", "second", etc. are only used for descriptive distinction and cannot be understood as indicating or implying relative importance.
[0020] In the description of the implementation manners of the present utility model, it should be noted that the orientation or positional relationship indicated by the terms "inside", "outside", "above", etc. is based on the orientation or positional relationship shown in the accompanying drawings, or the orientation or positional relationship in which the product of the present utility model is usually placed during use. It is only for the convenience of describing the present utility model and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation of the present utility model.
[0021] Such as Figures 1 to 4As shown in the figure, a white glutinous rice sorting device includes a box body 1. A feeding mechanism 3 for feeding control is arranged at the top of the box body 1. A screening mechanism 4 for swinging and screening is arranged at the bottom of the box body 1. A sorting mechanism 5 for sorting glutinous rice is connected to the screening mechanism 4 located inside the box body 1. A limiting mechanism 6 for limiting the sorting mechanism 5 is arranged on one side of the sorting mechanism 5. A dust collection mechanism 2 for absorbing dust is arranged on one side of the box body 1. One side of the dust collection mechanism 2 is connected to the sorting mechanism 5 located inside the box body 1. Specifically, when sorting glutinous rice is required, the glutinous rice is poured into the feeding mechanism 3. The feeding mechanism 3 can control the quantity of glutinous rice entering the sorting mechanism 5, avoiding poor screening effect caused by excessive glutinous rice entering at one time. At the same time, the feeding mechanism 3 can also reduce the escape of dust generated when the glutinous rice enters. Subsequently, the material enters the sorting mechanism 5. By starting the screening mechanism 4 to swing and drive the sorting mechanism 5, the screening and sorting of the material can be realized, facilitating the separation of glutinous rice of different specifications. At the same time, when the screening mechanism 4 is started during the screening process, the dust collection mechanism 2 can effectively suck the dust generated by the glutinous rice during the screening process in the sorting mechanism 5, reducing the escape of dust, reducing the pollution to the production site environment, and also reducing the potential damage of dust to equipment, products and staff. And the limiting mechanism 6 limits the sorting mechanism 5 during the screening of the sorting mechanism 5, avoiding potential safety hazards caused by the sorting mechanism 5 falling off due to shaking. At the same time, through the integrated setting of the sorting mechanism 5, the glutinous rice is prevented from being thrown off due to inertial force during the screening and sorting process, facilitating subsequent collection.
[0022] As Figure 2 shown, the feeding mechanism 3 includes a feeding port 301. The feeding port 301 is fixedly installed at the top of the box body 1. A plugging slot 303 is opened in the feeding port 301. A pulling plate 302 is slidably arranged in the plugging slot 303. Specifically, by pouring the glutinous rice into the feeding port 301 and sliding the pulling plate 302 along the plugging slot 303, it is convenient to control the quantity of glutinous rice entering the sorting mechanism 5, avoiding poor screening effect caused by excessive glutinous rice entering at one time. At the same time, the pulling plate 302 can also reduce the escape of dust generated when the glutinous rice enters.
[0023] As Figure 2 、 Figure 3As shown in the figure, the sieve moving mechanism 4 includes an installation groove 401 and a motor 402. The installation groove 401 is opened on the inner bottom wall of the box body 1. The number of the installation grooves 401 is two groups, and they are symmetrically arranged. The motor 402 is fixedly installed at the center of the bottom of the box body 1. The output end of the motor 402 penetrates through the side wall of the box body 1 and is fixedly connected with an eccentric wheel 409. Two first sliding rods 404 are fixedly installed in the two installation grooves 401. Fixed blocks 406 are fixedly installed on the inner bottom wall of the box body 1 above the installation grooves 401. The number of the fixed blocks 406 is two groups, and they are symmetrically arranged. A second sliding rod 405 is slidably arranged on the fixed block 406. A first slider 403 and a second slider 408 are respectively slidably arranged on the first sliding rods 404 on both sides of the fixed block 406. Both ends of the second sliding rod 405 are fixedly connected with the side walls of the first slider 403 and the second slider 408. A first spring 407 is sleeved on the second sliding rod 405 between the corresponding side walls of the fixed block 406 and the second slider 408. The second slider 408 is arranged on the side close to the eccentric wheel 409. Specifically, by driving the motor 402 to drive the eccentric wheel 409 to rotate, the eccentric wheel 409 squeezes the second slider 408 to drive the second sliding rod 405 to slide along the fixed block 406. At the same time, the other end of the second sliding rod 405 pushes the first slider 403 to move, so that the second slider 408 and the first slider 403 slide along the first sliding rod 404 in the installation groove 401 to drive the sieve frame 505 to translate synchronously, which increases the stability of the equipment. And the first spring 407 between the fixed block 406 and the second slider 408 drives the second slider 408 to reset, so that the swinging amplitude of the eccentric wheel 409 is relatively gentle when squeezing the second sliders 408 on both sides, reducing the breakage of glutinous rice and the generation of dust during the shaking process.
[0024] As Figure 2 , Figure 3As shown, the sorting mechanism 5 includes a sieve frame 505. The sieve frame 505 is fixedly installed on the tops of the two groups of the first sliders 403 and the second sliders 408. Third slide rods 503 are fixedly arranged on the two side walls inside the box body 1. Third sliders 504 are slidably arranged on the third slide rods 503. One side wall of the third slider 504 is fixedly connected to the sieve frame 505. Multiple sorting boxes 501 and collection boxes 506 are slidably arranged on the sieve frame 505. A screening net 502 is placed inside the sorting box 501. Specifically, by correspondingly replacing the specification of the screening net 502 inside the sorting box 501 according to the specifications to be sorted, the applicability of the device is improved. At the same time, the replaced sorting box 501 is inserted into the sieve frame 505 and is shaken by the shaking mechanism 4 for screening. Finally, the broken rice and impurities generated fall into the collection box 506, which is convenient for the operator to collect and process uniformly. Moreover, the cooperation between the third slider 504 and the third slide rod 503 behind the sieve frame 505 improves the stability of the sieve frame 505 during shaking.
[0025] As Figure 4 shown, the limiting mechanism 6 includes a hexagonal column 601. The hexagonal column 601 is fixedly installed on one side wall of the sieve frame 505 between the two groups of sorting boxes 501. A T-shaped column 605 is fixedly arranged on one side wall of the hexagonal column 601. A limiting rod 602 is movably sleeved on the hexagonal column 601 and the T-shaped column 605. A multi-sided groove 604 is formed on the limiting rod 602. The size of the multi-sided groove 604 is adapted to the hexagonal column 601. A second spring 603 is sleeved between the corresponding side walls of the T-shaped column 605 and the limiting rod 602 on the T-shaped column 605. The size of the hexagonal column 601 is larger than that of the T-shaped column 605. Specifically, by pulling the limiting rod 602 out of the hexagonal column 601 onto the T-shaped column 605, and then rotating the limiting rod 602 to make it perpendicular to the ground and inserting it into the hexagonal column 601, the sorting box 501 on the sieve frame 505 is limited. The second spring 603 sleeved on the T-shaped column 605 applies a force to the limiting rod 602 to prevent it from slipping off during shaking, avoiding potential safety hazards caused by the sorting box 501 falling out due to shaking. Moreover, by arranging it between the two groups of sorting boxes 501, the sorting boxes 501 on both sides can be limited simultaneously, saving costs and increasing efficiency.
[0026] As Figure 2 、 Figure 3As shown in the figure, the dust collection mechanism 2 includes a ventilation branch pipe 201, a dust suction head 202 and a dust suction machine 204. The number of the dust suction heads 202 is multiple groups. The dust suction heads 202 are fixedly installed on one side wall of the sieve frame 505 between two groups of the sieve boxes 501. The ventilation branch pipe 201 is fixedly installed on an outer side wall of the box body 1 and extends into the box body 1. A corrugated pipe 203 is connected between the dust suction head 202 and the ventilation branch pipe 201. The dust suction machine 204 is fixedly installed on an outer side wall of the box body 1. One end of the ventilation branch pipe 201 is connected to the dust suction machine 204. A collection box 2010 is fixedly arranged on an outer side wall of the box body 1 on one side of the dust suction machine 204. An inclined baffle 205 is fixedly arranged in the collection box 2010. A dust collection box 208 is slidably arranged at the inner bottom of the collection box 2010. A dust collection bag 207 is arranged on one side of the collection box 2010. Connection pipes 206 are respectively connected between the collection box 2010, the dust suction machine 204 and the dust collection bag 207. A cabinet door 209 is hingedly installed on the collection box 2010; specifically, when screening, the dust suction machine 204 is started, and the dust generated between the two sieve boxes 501 during screening is directly sucked by the dust suction heads 202 arranged between the two sieve boxes 501, which can effectively suck the dust generated by the glutinous rice during the screening process in the sorting mechanism 5, reduce the escape of dust, reduce the pollution of the production site environment, and also reduce the potential damage of dust to equipment, products and staff. At the same time, the corrugated pipe 203 facilitates the synchronous swing of the dust suction head 202 when it swings. Then, it is discharged into the collection box 2010 through the ventilation branch pipe 201 via the dust suction machine 204 and the connected connection pipe 206. The larger impurities are blocked by the inclined baffle 205 arranged in the collection box 2010 and fall into the lower dust collection box 208, and the lighter dust is discharged into the dust collection bag 207 through the connection pipe 206, which is convenient for the operator to carry out centralized treatment and avoid blocking the dust collection bag 207 by larger sundries. At the same time, it is convenient to clean the inside of the collection box 2010 by opening the cabinet door 209.
[0027] In summary: When sorting glutinous rice is required, pour the glutinous rice into the feeding mechanism 3. The feeding mechanism 3 can control the amount of glutinous rice entering the sorting mechanism 5, avoiding poor screening effect caused by excessive glutinous rice entering at one time. At the same time, the feeding mechanism 3 can also reduce the dust emission generated when the glutinous rice enters. Subsequently, the material enters the sorting mechanism 5. By starting the shaking mechanism 4 to swing and drive the sorting mechanism 5, the screening and sorting of the material can be realized, which is convenient for separating glutinous rice of different specifications. At the same time, starting the dust collection mechanism 2 during the shaking process can effectively suck the dust generated by the glutinous rice during the shaking process in the sorting mechanism 5, reducing dust emission, reducing the pollution to the production site environment, and also reducing the potential damage of dust to equipment, products and staff. Moreover, the limiting mechanism 6 limits the sorting mechanism 5 when the sorting mechanism 5 shakes, avoiding potential safety hazards caused by the sorting mechanism 5 getting out of position due to shaking. At the same time, through the integrated setting of the sorting mechanism 5, the glutinous rice is prevented from being thrown off due to inertial force during the screening and sorting process, facilitating subsequent collection.
[0028] The above shows and describes the basic principles, main features and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited by the above embodiments. What is described in the above embodiments and the specification is only the principle of the present invention. Without departing from the spirit and scope of the present invention, the present invention will have various changes and improvements, and these changes and improvements all fall within the scope of the present invention claimed. The scope of protection required by the present invention is defined by the appended claims and their equivalents.
Claims
1. A white glutinous rice sorting device, characterized in that: The invention comprises a box body (1), wherein a feeding mechanism (3) for feeding control is arranged on the top of the box body (1), a sieving mechanism (4) for swing screening is arranged on the bottom of the box body (1), a sorting mechanism (5) for sorting glutinous rice is connected to the sieving mechanism (4) located in the box body (1), a limiting mechanism (6) for limiting the position of the sorting mechanism (5) is arranged on one side of the sorting mechanism (5), a dust collecting mechanism (2) for absorbing dust is arranged on one side of the box body (1), one side of the dust collecting mechanism (2) is connected to the sorting mechanism (5) located in the box body (1), and the sieving mechanism (4) comprises a mounting groove (401) and a motor (402), and the mounting groove (401) The mounting grooves (401) are provided on the inner side wall at the bottom of the housing (1), the number of the mounting grooves (401) is two groups, and the mounting grooves (401) are symmetrically arranged. The motor (402) is fixedly installed at the bottom center of the housing (1), the output end of the motor (402) passes through the side wall of the housing (1) and is fixedly connected with an eccentric wheel (409), the first sliding rods (404) are fixedly installed in the two groups of the mounting grooves (401), the bottom inner side wall of the housing (1) is located above the mounting grooves (401) and fixedly installed with a fixing block (406), the number of the fixing blocks (406) is two groups, and the fixing blocks (406) are symmetrically arranged, the second sliding rods (405) are slidably arranged on the fixing blocks (406), and the first sliding rods (405) located on both sides of the fixing blocks (406) are fixedly installed with the fixing blocks (406). A first slider (403) and a second slider (408) are slidably arranged on the rod (404), and two ends of the second slider (405) are fixedly connected to the side walls of the first slider (403) and the second slider (408), respectively. A first spring (407) is sleeved on the second slider (405) located between the fixed block (406) and the corresponding side walls of the second slider (408). The second slider (408) is arranged on a side close to the eccentric wheel (409). The sorting mechanism (5) includes a screen frame (505), and the screen frame (505) is fixedly installed on the top of the two groups of the first slider (403) and the second slider (408). A third slider is fixedly arranged on the two side walls in the box body (1). (503), a third slider (504) is slidably arranged on the third slide bar (503), a side wall of the third slider (504) is fixedly connected to the sieve frame (505), a multi-component sieve box (501) and a collecting box (506) are slidably arranged on the sieve frame (505), a sieve net (502) is placed in the sieve box (501), the limiting mechanism (6) comprises a hexagonal column (601), the hexagonal column (601) is fixedly installed on a side wall of the sieve frame (505) between two groups of sieve boxes (501), a T-shaped column (605) is fixedly arranged on a side wall of the hexagonal column (601), and a limiting rod (602) is movably sleeved on the hexagonal column (601) and the T-shaped column (605),The limiting rod (602) is provided with a polygonal groove (604), the size of which is compatible with the hexagonal column (601), the T-shaped column (605) is provided with a second spring (603) between the corresponding side walls of the limiting rod (602) and the T-shaped column (605), the size of the hexagonal column (601) is larger than the size of the T-shaped column (605), the dust collecting mechanism (2) comprises a ventilation branch pipe (201), a dust collector head (202) and a dust collector (204), the number of the dust collector heads (202) is multiple groups, the dust collector heads (202) are fixedly mounted on a side wall of the sieve frame (505) between two groups of the sieve boxes (501), the ventilation branch pipe (201) is fixedly mounted on an outer side wall of the box body (1) and extends into the box body (1), the dust collector heads (202) are arranged on the side wall of the sieve frame (505) between the two groups of the sieve boxes (501), the ventilation branch pipe (201) is fixedly mounted on an outer side wall of the box body (1) and extends into the box body (1), and the dust collector heads (202) are arranged on the side wall of the sieve frame (505) between the two groups of the sieve boxes (501). 02) and the ventilation branch pipe (201), a bellows (203) is connected between the vacuum cleaner (204) and the box body (1), the vacuum cleaner (204) is fixedly mounted on an outer wall of the box body (1), one end of the ventilation branch pipe (201) is connected to the vacuum cleaner (204), a collection box (2010) is fixedly mounted on an outer wall of the box body (1) on one side of the vacuum cleaner (204), an inclined baffle (205) is fixedly mounted inside the collection box (2010), a dust box (208) is slidably mounted on the inner bottom of the collection box (2010), a dust bag (207) is mounted on one side of the collection box (2010), connecting pipes (206) are respectively connected between the collection box (2010 and the vacuum cleaner (204) and the dust bag (207), and a cabinet door (209) is hingedly mounted on the collection box (2010).
2. A white glutinous rice sorting device according to claim 1, characterized in that: The feeding mechanism (3) comprises a feeding port (301), the feeding port (301) is fixedly mounted on the top of the box body (1), a plug-in slot (303) is provided in the feeding port (301), and a pulling plate (302) is slidably arranged in the plug-in slot (303).
Citation Information
Patent Citations
Automatic rice grain screening machine
CN219377897U