Residue powder screening equipment for quinoa deep processing
By adopting the design of mounting plate support and oscillating screen box in the deep processing of quinoa, the wear and clogging problems caused by fixed screening plates are solved, and the efficient slag powder removal effect is achieved.
Patent Information
- Application Number
- CN202422845603.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-21
- Publication Date
- 2025-10-24
- Estimated Expiration
- 2034-11-21
AI Technical Summary
In the prior art, since the screening plate is fixed, direct impact on the screening plate causes local wear and damage and rapid blockage of the quinoa, affecting the overall screening effect.
Design a residue and powder removal device for quinoa deep processing. The device adopts an overall structure supported by mounting plates, combined with a swing screen box, feed hopper and impurity removal balance bar to realize swing operation and unblocking and cleaning, thereby improving the screening effect.
Through the swinging operation of the swing screen box and the dredging and cleaning of the impurity removal balance bar, local wear and blockage are effectively avoided, and the overall screening efficiency and effect are improved.
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Figure CN223465108U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the field of quinoa deep processing, especially to a quinoa deep processing residue powder screening equipment. BACKGROUND
[0002] Through deep processing, quinoa can be made into flour, cakes, biscuits and other foods, significantly improving its economic value. The deep-processed quinoa products not only have various tastes, but also are convenient to eat, meeting the needs of consumers for food diversification and convenience. Quinoa deep processing residue powder screening is a key step to ensure the quality of quinoa products. By selecting appropriate screening equipment, the purity of quinoa can be effectively improved.
[0003] In order to perform screening and conveying, the quinoa is directly dropped on the screening plate. During screening, the screening plate is fixedly arranged, and the quinoa directly impacts the screening plate, causing local wear and damage to the local position. Rapid impact causes local blockage, affecting the overall screening effect.
[0004] Therefore, in view of the above problems that the screening plate is fixedly arranged, the quinoa directly impacts the screening plate, causing local wear and damage to the local position, and rapid impact causes local blockage, a quinoa deep processing residue powder screening equipment can be designed. UTILITY MODEL CONTENT
[0005] In order to overcome the problem that during screening, the screening plate is fixedly arranged, the quinoa directly impacts the screening plate, causing local wear and damage to the local position, and rapid impact causes local blockage, affecting the overall screening effect.
[0006] The utility model discloses a quinoa deep processing residue powder screening equipment, which comprises a mounting back plate, a swing screen box, a feed hopper, a foreign matter removing balance rod and a quinoa discharge pipe.
[0007] Preferably, the feed hopper is arranged above the two mounting back plates and can be used for guiding the quinoa conveying. The quinoa discharge pipe is arranged at one end of the swing screen box and can be used for conveying the screened quinoa. The foreign matter removing balance rod is arranged outside the two mounting back plates and corresponds to the swing screen box for internal dredging and cleaning, thereby accelerating the screening and improving the overall screening effect.
[0008] As preferred, the bottom of the two sets of installation backrests is provided with a balance base, the two sets of installation backrests are provided with a partition plate for partitioning the swing screen box, the top of the two sets of installation backrests is provided with a support table for mounting a feeding hopper, and the end of the two sets of installation backrests away from the balance base is symmetrically provided with an induction flickering lamp corresponding to the swing screen box.
[0009] As preferred, the balance base is provided with a support frame extending to the installation backrest on both sides, the support frame and the installation backrest are provided with a positioning bolt therebetween, the outside of the induction flickering lamp is provided with a dustproof sleeve, the inside of the induction flickering lamp is provided with a signal receiver, the partition plate and the two sets of installation backrests form a slag powder space inside, the bottom of the slag powder space is provided with a slag powder collecting box, the outer end of the slag powder collecting box is provided with a push block, and the two sets of installation backrests are provided with a dismounting opening for pulling the slag powder collecting box.
[0010] As preferred, the inside of the swing screen box is provided with a screening space, the inside of the screening space is provided with a stainless steel screen, the swing screen box is transversely linearly provided with a plurality of discharge ports corresponding to the buckwheat discharge pipes at one end, the swing screen box is symmetrically provided with a photoelectric sensor away from the discharge port at one end, the photoelectric sensor is provided with a light shield cover around, and the bottom of the swing screen box is linearly provided with a plurality of slag powder falling ports corresponding to the slag powder space.
[0011] As preferred, the swing screen box is respectively provided with a steering rod and a driving motor penetrating in the installation backrest on both sides, the steering rod is provided with a fixing ring fixed on the installation backrest, the outside of the driving motor is provided with a control panel, the control panel is provided with a cable electrically connected to the driving motor at the outer end, and the end of the driving motor is provided with an inclination sensor.
[0012] As preferred, the feeding hopper is provided with a mounting frame around, the bottom of the feeding hopper is provided with a feeding pipe, the inside of the feeding pipe is provided with an electromagnetic control valve, and the outside of the electromagnetic control valve is electrically provided with a meter.
[0013] As preferred, the outside of the impurity removal balance rod is linearly provided with a plurality of insertion rods, the outside of the insertion rod is provided with a grinding blade, the second extension frame is fixedly arranged at the end of the impurity removal balance rod away from the insertion rod, the high-definition camera is arranged on the impurity removal balance rod close to both ends, the first extension frame is arranged at the end of the second extension frame away from the impurity removal balance rod, the second rotation rod is arranged between the first extension frame and the second extension frame, the second control motor is arranged at the outer end of the second rotation rod, the second control motor drives the second rotation rod to drive the first extension frame and the second extension frame to operate in a steering manner, the fixed frame is arranged at the end of the second extension frame away from the first extension frame, the mounting clamping frame is arranged at the end of the fixed frame away from the second extension frame, the mounting bolts are arranged at both ends of the mounting clamping frame, the first rotation rod is arranged between the fixed frame and the second extension frame, the first control motor is arranged at the outer end of the first rotation rod, and the first control motor drives the first rotation rod to drive the fixed frame and the second extension frame to operate in a steering manner.
[0014] The beneficial effects of the utility model are as follows:
[0015] 1. The difference between the present application and the prior art is that the installation backboard is provided in two groups, which can be used to support the overall construction and improve the overall stability, the swinging sieve box is provided between the two groups of installation backboards and can be operated to swing to reach the appropriate angle, thereby performing the operation of screening the buckwheat dregs and powder, the feeding hopper is provided above the two groups of installation backboards and can be used to guide the buckwheat conveying, the buckwheat discharge pipe is provided at one end of the swinging sieve box and can be used to convey the screened buckwheat, and the impurity removal balance rod is provided outside the two groups of installation backboards and corresponds to the swinging sieve box to dredge and clean the interior, thereby accelerating the screening and improving the overall screening effect. BRIEF DESCRIPTION OF DRAWINGS
[0016] Figure 1 The overall structure schematic diagram of the dregs and powder screening equipment is shown.
[0017] Figure 2 The installation backboard structure schematic diagram of the dregs and powder screening equipment is shown.
[0018] Figure 3 The swinging sieve box structure schematic diagram of the dregs and powder screening equipment is shown.
[0019] Figure 4 The feeding hopper structure schematic diagram of the dregs and powder screening equipment is shown.
[0020] Figure 5 The impurity removal balance rod structure schematic diagram of the dregs and powder screening equipment is shown.
[0021] Explanation of reference signs: 1, mounting back plate; 2, swing sieve box; 3, feed hopper; 4, impurity removal balance bar; 5, quinoa discharge pipe; 101, balance base; 102, support table; 103, support frame; 104, positioning bolt; 105, dust cover; 106, inductive flashing light; 107, slag powder collection box; 108, dismounting opening; 109, push block; 110, slag powder space; 111, partition plate; 201, screening space; 202, turning lever; 203, fixed ring; 204, stainless steel mesh sieve; 205, drive motor; 206, control panel; 207, light shield; 208, photoelectric sensor; 209, discharge opening; 210, cable; 301, mounting bracket; 302, feed pipe; 303, electromagnetic control valve; 304, meter; 401, mounting clamping frame; 402, mounting bolt; 403, fixed frame; 404, first extension frame; 405, second extension frame; 406, first rotating lever; 407, first control motor; 408, second rotating lever; 409, second control motor; 410, insertion rod; 411, grinding blade; 412, high-definition camera. DETAILED DESCRIPTION
[0022] The utility model is further explained in connection with the drawings and examples.
[0023] Please refer to Figures 1-5 The utility model provides a kind of example: a slag powder screening equipment for quinoa deep processing, including installation back plate 1, swing sieve box 2, feed hopper 3, impurity removal balance bar 4 and quinoa discharge pipe 5;For supporting overall construction, installation back plate 1 is two groups of settings, swing sieve box 2 for being operated to quinoa slag powder screening operation is equipped with in the swing operation between two groups of installation back plate 1, two groups of installation back plate 1 top are equipped with for importing quinoa conveying feed hopper 3, swing sieve box 2 one end is equipped with for conveying quinoa after screening quinoa discharge pipe 5, two groups of installation back plate 1 outside are equipped with corresponding swing sieve box 2 for being used to internal dredging cleaning to accelerate screening impurity removal balance bar 4.
[0024] Please refer to Figures 2-3In the embodiment, the bottom of the two sets of mounting backrests 1 is provided with a balance base 101, the two sets of mounting backrests 1 are provided with a partition plate 111 for partitioning the swing screen box 2, the top of the two sets of mounting backrests 1 is provided with a support table 102 for mounting the feeding hopper 3, the end face of the two sets of mounting backrests 1 away from the balance base 101 is symmetrically provided with an induction flickering lamp 106 corresponding to the swing screen box 2, the balance base 101 is provided with a support frame 103 extending to the mounting backrest 1 on both sides, the support frame 103 and the mounting backrest 1 are provided with a positioning bolt 104, the outside of the induction flickering lamp 106 is provided with a dustproof sleeve 105, the inside of the induction flickering lamp 106 is provided with a signal receiver, the partition plate 111 and the two sets of mounting backrests 1 form a slag powder space 110 inside, the bottom of the slag powder space 110 is provided with a slag powder collecting box 107, the outer end of the slag powder collecting box 107 is provided with a push block 109, the two sets of mounting backrests 1 are provided with a dismounting opening 108 for pulling out the slag powder collecting box 107.
[0025] Please refer to Figures 2-3 In the embodiment, the inside of the swing screen box 2 is provided with a screening space 201, the inside of the screening space 201 is provided with a stainless steel screen 204, the swing screen box 2 is transversely and linearly provided with a plurality of discharge ports 209 corresponding to the quinoa discharge pipe 5 at one end, the swing screen box 2 is symmetrically provided with a photoelectric sensor 208 away from the discharge port 209 at one end, the model of the photoelectric sensor 208 is OMR150M-R1000-SSI-V1V1B, the photoelectric sensor 208 is provided with a light shield 207 on the periphery, the bottom of the swing screen box 2 is linearly provided with a plurality of slag powder falling ports corresponding to the slag powder space 110, the two sides of the swing screen box 2 are respectively provided with a steering rod 202 and a driving motor 205 inserted in the mounting backrest 1, the steering rod 202 is provided with a fixing ring 203 fixed on the mounting backrest 1, the outside of the driving motor 205 is provided with a control panel 206, the outer end of the control panel 206 is provided with a cable 210 electrically connected to the driving motor 205, the end of the driving motor 205 is provided with an inclination sensor, the model of the inclination sensor is TMM55E-PMH060.
[0026] Please refer to Figures 3-5In the embodiment, the outer periphery of the feeding hopper 3 is provided with a mounting frame 301, the bottom of the feeding hopper 3 is provided with a feeding pipe 302, the inside of the feeding pipe 302 is provided with an electromagnetic control valve 303, the outer side of the electromagnetic control valve 303 is provided with a meter 304, the outer side of the impurity removal balance rod 4 is linearly provided with a plurality of plug rods 410, the outer periphery of the plug rod 410 is provided with a grinding blade 411, the end of the impurity removal balance rod 4 away from the plug rod 410 is fixedly provided with a second extension frame 405, the impurity removal balance rod 4 is provided with a high-definition camera 412 close to both ends, the end of the second extension frame 405 away from the impurity removal balance rod 4 is provided with a first extension frame 404, the second extension frame 405 and the first extension frame 404 are provided with a second rotating rod 408, the outer end of the second rotating rod 408 is provided with a second control motor 409, the second control motor 409 drives the second rotating rod 408 to drive the second extension frame 405 and the first extension frame 404 to turn, the end of the second extension frame 405 away from the first extension frame 404 is provided with a fixed frame 403, the end of the fixed frame 403 away from the second extension frame 405 is provided with a mounting clamping frame 401, both ends of the mounting clamping frame 401 are provided with mounting bolts 402, the fixed frame 403 and the second extension frame 405 are provided with a first rotating rod 406, the outer end of the first rotating rod 406 is provided with a first control motor 407, the first control motor 407 drives the first rotating rod 406 to drive the fixed frame 403 and the second extension frame 405 to turn.
[0027] In operation, the quinoa is input into the screening space 201 through the feeding pipe 302 in the feeding hopper 3, the electromagnetic control valve 303 and the meter 304 control the amount of each input, the parameters are adjusted by the control panel 206, the cable 210 transmits signals to the driving motor 205 to drive the swing screen box 2, the swing operation is synchronized with the tilt angle sensor, the swing state is sensed each time, the photoelectric sensor 208 corresponds to the signal receiver each time the swing is performed, the sensing flashing light 106 is turned on, the quinoa is screened by the stainless steel screen 204, the slag powder is input into the slag powder space 110 through the slag powder outlet, and is stored in the slag powder collection box 107, and the intact quinoa is discharged through the discharge outlet 209.
[0028] When cleaning, the first control motor 407 drives the first rotating rod 406 to drive the fixed frame 403 and the second extension frame 405 to turn, the second control motor 409 drives the second rotating rod 408 to drive the first extension frame 404 and the second extension frame 405 to turn, so that the plug rod 410 is inserted into the stainless steel screen 204, the excess burrs are removed, and the screening efficiency is improved.
[0029] Through the above steps, through the swing sieve box 2, located between the two groups of installation backboard 1, can be swing operation, reach the appropriate angle, so as to carry out the operation of the quinoa residue powder screening, using the feed hopper 3, located above the two groups of installation backboard 1, can be used for the introduction of quinoa conveying, through the quinoa discharge pipe 5, located at one end of the swing sieve box 2, can be used for conveying after screening quinoa, using the impurity removal balance bar 4, located outside the two groups of installation backboard 1, corresponding to the swing sieve box 2 for internal dredging and cleaning, so as to speed up the screening.
Claims
1. A kind of for quinoa deep processing, residue powder screening equipment, including installation with backplate (1);Characterized in that: It also includes a swing screen box (2), feed hopper (3), impurity removal balance bar (4) and quinoa discharge pipe (5); The installation backboard (1) for supporting the overall construction is provided with two groups, the swing screen box (2) is provided between the two groups of installation backboard (1) and can be swung to operate to remove the quinoa residue powder, the feed hopper (3) for conveying quinoa is provided above the two groups of installation backboard (1), the quinoa discharge pipe (5) for conveying screened quinoa is provided at one end of the swing screen box (2), and the impurity removal balance bar (4) for dredging the interior and accelerating screening is provided on the outer side of the two groups of installation backboard (1).
2. The residue powder screening device for deep processing of quinoa according to claim 1, characterized in that: The bottom of the two groups of installation backboard (1) is provided with a balance base (101), the two groups of installation backboard (1) are provided with a partition plate (111) for partitioning the swing screen box (2) between the two groups of installation backboard (1), the top of the two groups of installation backboard (1) is provided with a support table (102) for mounting the feed hopper (3), and the end face of the two groups of installation backboard (1) away from the balance base (101) is provided with a corresponding induction flickering lamp (106) symmetrically.
3. The residue powder screening device for deep processing of quinoa according to claim 2, characterized in that: The balance base (101) is provided with a support frame (103) extending to the installation backboard (1) on both sides, the support frame (103) and the installation backboard (1) are provided with a positioning bolt (104) therebetween, the outer side of the induction flickering lamp (106) is provided with a dustproof sleeve (105), the inside of the induction flickering lamp (106) is provided with a signal receiver, the partition plate (111) and the two groups of installation backboard (1) form a residue powder space (110) inside, the bottom of the residue powder space (110) is provided with a residue powder collecting box (107), the outer end of the residue powder collecting box (107) is provided with a toggle clamp (109), and the two groups of installation backboard (1) are provided with a dismounting opening (108) for pulling the residue powder collecting box (107) on the upper portion.
4. The residue powder screening device for deep processing of quinoa according to claim 2, characterized in that: The inside of the swing screen box (2) is provided with a screening space (201), the inside of the screening space (201) is provided with a stainless steel screen (204), one end of the swing screen box (2) is provided with a plurality of discharge ports (209) corresponding to the quinoa discharge pipe (5) in a transverse linear manner, one end of the swing screen box (2) away from the discharge port (209) is provided with a photoelectric sensor (208) symmetrically, the periphery of the photoelectric sensor (208) is provided with a light shield (207), and the bottom of the swing screen box (2) is provided with a plurality of residue powder falling ports corresponding to the residue powder space (110) in a linear manner.
5. The residue powder screening device for deep processing of quinoa according to claim 4, characterized in that: The two sides of the swing screen box (2) are respectively provided with a steering rod (202) and a driving motor (205) inserted in the installation backboard (1), the steering rod (202) is provided with a fixing ring (203) fixed to the installation backboard (1), the outer side of the driving motor (205) is provided with a control panel (206), the outer end of the control panel (206) is provided with a cable (210) electrically connected to the driving motor (205), and the end portion of the driving motor (205) is provided with an inclination sensor.
6. The residue powder screening device for deep processing of quinoa according to claim 1, characterized in that: The periphery of the feed hopper (3) is provided with a mounting frame (301), the bottom of the feed hopper (3) is provided with a conveying pipe (302), the inside of the conveying pipe (302) is provided with an electromagnetic control valve (303), and the outside of the electromagnetic control valve (303) is provided with a meter (304).
7. The residue powder screening device for deep processing of quinoa according to claim 1, characterized in that: The outer side linear of the impurity removing balance rod (4) is provided with a plurality of groups of inserting rods (410), the periphery of the inserting rod (410) is provided with grinding blades (411), the end of the impurity removing balance rod (4) away from the inserting rod (410) is fixedly provided with a second extension frame (405), the impurity removing balance rod (4) is provided with a high-definition camera (412) near both ends, the end of the second extension frame (405) away from the impurity removing balance rod (4) is provided with a first extension frame (404), the second extension frame (405) and the first extension frame (404) are provided with a second rotating rod (408), the outer end of the second rotating rod (408) is provided with a second control motor (409), the second control motor (409) drives the second rotating rod (408) to drive the first extension frame (404) and the second extension frame (405) to operate, the end of the second extension frame (405) away from the first extension frame (404) is provided with a fixed frame (403), the end of the fixed frame (403) away from the second extension frame (405) is provided with a mounting clamping frame (401), both ends of the mounting clamping frame (401) are provided with mounting bolts (402), the fixed frame (403) and the second extension frame (405) are provided with a first rotating rod (406), the outer end of the first rotating rod (406) is provided with a first control motor (407), the first control motor (407) drives the first rotating rod (406) to drive the fixed frame (403) and the second extension frame (405) to operate.