Vibration feeder for powder making workshop
By introducing a multi-directional vibration and oscillation structure into the vibrating feeder in the powder mill, the problem of poor conveying effect caused by unidirectional vibration was solved, and more efficient raw material conveying was achieved.
Patent Information
- Application Number
- CN202423121084.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-18
- Publication Date
- 2025-12-05
- Estimated Expiration
- 2034-12-18
AI Technical Summary
The existing vibrating feeder in the flour milling workshop has poor raw material conveying efficiency due to its unidirectional vibration mode.
A vibratory feeder was designed, comprising components such as a base plate, chute, slide plate, fixed plate, feed box, cam, and gears. The vibration effect of the feed box is enhanced through multi-directional vibration and oscillation structure.
The multi-directional vibration and oscillation structure significantly improves the conveying effect of raw materials and enhances the feeding capacity of the vibrating feeder.
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Figure CN223632381U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the field of flour mill, especially a kind of flour mill vibrating feeder. BACKGROUND
[0002] Flour mill mainly uses grinding, screening and cleaning flour process to produce different grades of flour. These powder products are widely used in food processing, beverage manufacturing and pharmaceutical industry and many other fields.
[0003] When waste material is prepared in flour mill, feeding machine is needed to deliver raw materials to the required equipment, and the raw materials are delivered by vibrating, but the vibrating is only in single direction, so that the vibrating effect is poor and the delivery effect is poor. UTILITY MODEL CONTENT
[0004] In order to overcome the deficiency of poor raw material delivery effect in the prior art, one of the purposes of the utility model is to provide a flour mill vibrating feeder.
[0005] One of the purposes of the utility model is achieved by the following technical scheme: a kind of flour mill vibrating feeder, including bottom plate, the lower side of the bottom plate is fixedly connected with two support blocks and motor, the upper side of the bottom plate is provided with feeding unit;
[0006] The feeding unit includes chute one, the upper side of the bottom plate is provided with chute one, the inner side of the chute one is slidably connected with sliding plate one, the upper side of the sliding plate one is fixedly connected with vertical rod, the upper end of the vertical rod is fixedly connected with fixed plate, the upper side of the right end of the fixed plate is fixedly connected with two fixed blocks, two The fixed blocks are rotatably connected with swing block between, the upper side of the swing block is fixedly connected with mounting plate, the upper side of the mounting plate is fixedly connected with feeding tank, the upper side of the feeding tank is provided with feeding hole, the upper side of the fixed plate is provided with chute two, the inner side of the chute two is slidably connected with sliding plate two, the upper side of the sliding plate two is fixedly connected with rotating block one, the outer side of the rotating block one is rotatably connected with control plate, the outer side of the upper end of the control plate is rotatably connected with rotating block two, the rotating block two is fixedly connected with mounting plate, the left side of the sliding plate two is fixedly connected with moving rod, the left end of the moving rod is fixedly connected with contact plate, the upper side of the fixed plate is fixedly connected with two L-shaped blocks, the control rod is rotatably connected between two The L-shaped blocks are rotatably connected with cam two, the upper side of the rotating block two is rotatably connected with connecting plate, the connecting plate is rotatably connected with sliding plate one, the right side of the feeding tank is provided with discharge port.
[0007] According to the flour mill vibrating feeder, the outer side of the sliding plate one and the inner wall of the chute one are fixedly connected with spring one.
[0008] According to the vibration feeder of the flour mill workshop, the spring two is fixedly connected between the contact plate and the fixed plate, and the moving rod is slidingly connected with the fixed plate.
[0009] According to the vibration feeder of the flour mill workshop, the rear end of the control rod penetrates through the rear side of the L-shaped block and is fixedly connected with a gear, the upper side of the bottom plate is fixedly connected with a mounting rod, and the upper end of the mounting rod is fixedly connected with a toothed plate.
[0010] According to the vibration feeder of the flour mill workshop, the toothed plate is meshingly connected with the gear.
[0011] According to the vibration feeder of the flour mill workshop, the outer side of the contact plate is fixedly connected with an arc-shaped block, and the contact plate is abutted against the second cam.
[0012] According to the vibration feeder of the flour mill workshop, the control plate is provided in an inclined structure.
[0013] According to the vibration feeder of the flour mill workshop, the right side of the feeding box is fixedly connected with a guide plate.
[0014] Beneficial effects:
[0015] By being provided with the bottom plate, the sliding groove one, the sliding plate one, the fixed plate, the feeding box, the first cam, the connecting plate, the connecting plate is facilitated to rotate, the feeding box is repeatedly moved left and right, the feeding box is vibrated, and by being provided with the L-shaped block, the second cam, the control rod, the gear and the toothed plate, the feeding box is facilitated to vibrate, the feeding box is repeatedly swung, the feeding box is vibrated again, the vibration effect and the feeding effect are increased.
[0016] Additional aspects and advantages of the present application will be described in part below with reference to the description and will be apparent in part from the description. BRIEF DESCRIPTION OF DRAWINGS
[0017] The present application will be further described below with reference to the drawings and embodiments.
[0018] Figure 1 It is a whole three-dimensional structure diagram of the vibration feeder of the flour mill workshop;
[0019] Figure 2 It is another perspective three-dimensional structure diagram of the vibration feeder of the flour mill workshop;
[0020] Figure 3 It is Figure 2 It is an enlarged view of A in the middle;
[0021] Figure 4 It is a rear perspective three-dimensional structure diagram of the vibration feeder of the flour mill workshop;
[0022] Figure 5 for Figure 4 Enlarged view of point B in the middle.
[0023] Legend:
[0024] 1. Base plate; 2. Support block; 3. Motor; 4. Feeding unit; 401. Slide 1; 402. Slide plate 1; 403. Upright pole; 404. Spring 1; 405. Fixing plate; 406. Fixing block; 407. Swinging block; 408. Mounting plate; 409. Feed box; 410. Feed hole; 411. Guide plate; 412. Rotating shaft; 413. Cam 1; 414. Connecting plate; 415. Moving rod; 416. Contact plate; 417. Spring 2; 418. L-shaped block; 419. Cam 2; 420. Control rod; 421. Gear; 423. Mounting rod; 424. Gear plate; 425. Slide 2; 426. Slide plate 2; 427. Rotating block 1; 428. Control plate; 429. Rotating block 2; 430. Discharge port. Detailed Implementation
[0025] This section will describe in detail the specific embodiments of the present utility model. The preferred embodiments of the present utility model are shown in the accompanying drawings. The purpose of the drawings is to supplement the textual description with graphics, so that people can intuitively and vividly understand each technical feature and the overall technical solution of the present utility model, but they should not be construed as limiting the scope of protection of the present utility model.
[0026] Reference Figure 1 - Figure 5 A vibrating feeder for a powder-making workshop includes a base plate 1. Two support blocks 2 and a motor 3 are fixedly connected to the lower side of the base plate 1. A feeding unit 4 is provided on the upper side of the base plate 1, wherein the feeding unit 4 facilitates the conveying of powder raw materials.
[0027] The feeding unit 4 comprises a chute one 401 which is arranged on the upper side of the bottom plate 1, the inner side of the chute one 401 is slidably connected with a slide plate one 402, the upper side of the slide plate one 402 is fixedly connected with a vertical rod 403, the upper end of the vertical rod 403 is fixedly connected with a fixed plate 405, the upper side of the right end of the fixed plate 405 is fixedly connected with two fixed blocks 406, the two fixed blocks 406 are rotatably connected with a swing block 407, the upper side of the swing block 407 is fixedly connected with a mounting plate 408, the upper side of the mounting plate 408 is fixedly connected with a feeding tank 409, the upper side of the feeding tank 409 is arranged with an inlet hole 410, the upper side of the bottom plate 1 is rotatably connected with a rotating shaft 412, the upper end of the rotating shaft 412 is fixedly connected with a cam one 413, the upper side of the cam one 413 is rotatably connected with a connecting plate 414, the connecting plate 414 is rotatably connected with the slide plate one 402, the right side of the feeding tank 409 is arranged with a discharge port 430, the outer side of the slide plate one 402 is fixedly connected with a spring one 404 between the inner wall of the chute one 401, the right side of the feeding tank 409 is fixedly connected with a guide plate 411, when the dust raw materials are conveyed, the raw materials are conveyed into the feeding tank 409 through the inlet hole 410, the motor 3 is started, the motor 3 drives the rotating shaft 412 to rotate, the rotating shaft 412 drives the cam one 413 to rotate, the cam one 413 drives the connecting plate 414 to rotate, the connecting plate 414 drives the slide plate one 402 to move left and right repeatedly, the slide plate one 402 drives the vertical rod 403 to move, the vertical rod 403 drives the fixed plate 405 to move, the fixed plate 405 drives the feeding tank 409 to move left and right repeatedly, the feeding tank 409 is vibrated, the conveying of the raw materials is facilitated.
[0028] The upper side of the fixed plate 405 is provided with a sliding groove two 425, the inner side of the sliding groove two 425 is slidably connected with a sliding plate two 426, the upper side of the sliding plate two 426 is fixedly connected with a rotating block one 427, the outer side of the rotating block one 427 is rotatably connected with a control plate 428, the outer side of the upper end of the control plate 428 is rotatably connected with a rotating block two 429, the rotating block two 429 is fixedly connected with the mounting plate 408, the left side of the sliding plate two 426 is fixedly connected with a moving rod 415, the left end of the moving rod 415 is fixedly connected with a contact plate 416, the upper side of the fixed plate 405 is fixedly connected with two L-shaped blocks 418, the control rod 420 is rotatably connected between the two L-shaped blocks 418, the outer side of the control rod 420 is fixedly connected with a cam two 419, the rear end of the control rod 420 penetrates through the rear side of the L-shaped block 418 and is fixedly connected with a gear 421, the upper side of the bottom plate 1 is fixedly connected with a mounting rod 423, the upper end of the mounting rod 423 is fixedly connected with a toothed plate 424, the toothed plate 424 is meshingly connected with the gear 421, the outer side of the contact plate 416 is fixedly connected with an arc-shaped block, the contact plate 416 abuts against the cam two 419, the contact plate 416 and the fixed plate 405 are fixedly connected with a spring two 417, the moving rod 415 is slidably connected with the fixed plate 405, the control plate 428 is provided in an inclined structure, the fixed plate 405 moves back and forth, the fixed plate 405 drives the L-shaped block 418 to move back and forth, the L-shaped block 418 drives the gear 421 on the control rod 420 to move back and forth repeatedly, the gear 421 is meshingly connected with the toothed plate 424, so that the gear 421 rotates, the gear 421 drives the control rod 420 to rotate, because the fixed plate 405 moves back and forth repeatedly, the control rod 420 rotates back and forth repeatedly, the control rod two 420 drives the cam two 419 to rotate back and forth repeatedly, the cam two 419 drives the contact plate 416 to move back and forth repeatedly, the contact plate 416 drives the moving rod 415 to move, the moving rod 415 drives the sliding plate two 426 to move back and forth repeatedly, the sliding plate two 426 drives the control plate 428 to rotate, because of the fixed block 406 and the swing block 407, the mounting plate 408 swings repeatedly, the feeding tank 409 swings repeatedly, the feeding tank 409 vibrates again, which facilitates the conveying of raw materials.
[0029] Working principle: in use, raw materials are put into the feeding tank 409 through the feeding hole 410, then the motor 3 is started, the motor 3 drives the cam one 413 to rotate, under the action of the connecting plate 414, the control feeding tank 409 moves back and forth repeatedly, so that the feeding tank 409 vibrates, at the same time, under the action of the fixed plate 405, the gear 421 on the control rod 420 moves back and forth repeatedly, under the action of the toothed plate 424, the control rod 420 rotates, the control rod 420 drives the cam two 419 to rotate, under the action of the contact plate 416, the moving rod 415, the control plate 428 and the swing block 407, the feeding tank 409 swings repeatedly, vibrates again, increases the vibration effect, facilitates the conveying of raw materials in the powder.
[0030] The utility model embodiment makes the detailed explanation in combination with the drawing, but the utility model is not limited to the above -mentioned embodiment, still can make various changes in the knowledge range that the person skilled in the art has possesses without departing from the utility model's tenet under the precondition that the utility model is not limited to the above -mentioned embodiment.
Claims
1. A mill plant vibratory feeder, characterized by, Including the bottom plate (1), the lower side of the bottom plate (1) is fixedly connected with two support blocks (2) and a motor (3), and the upper side of the bottom plate (1) is provided with a feeding unit (4); The feeding unit (4) includes a chute (401) which is opened on the upper side of the bottom plate (1), the inner side of the chute (401) is slidably connected with a sliding plate (402), the upper side of the sliding plate (402) is fixedly connected with a vertical rod (403), the upper end of the vertical rod (403) is fixedly connected with a fixed plate (405), the upper side of the right end of the fixed plate (405) is fixedly connected with two fixed blocks (406), the two fixed blocks (406) are rotatably connected with a swing block (407), the upper side of the swing block (407) is fixedly connected with a mounting plate (408), the upper side of the mounting plate (408) is fixedly connected with a feeding box (409), the upper side of the feeding box (409) is provided with an inlet hole (410), the upper side of the fixed plate (405) is provided with a chute (425), the inner side of the chute (425) is slidably connected with a sliding plate (426), the upper side of the sliding plate (426) is fixedly connected with a rotating block (427), the outer side of the rotating block (427) is rotatably connected with a control plate (428), the outer side of the upper end of the control plate (428) is rotatably connected with a rotating block (429), the rotating block (429) is fixedly connected with the mounting plate (408), the left side of the sliding plate (426) is fixedly connected with a moving rod (415), the left end of the moving rod (415) is fixedly connected with a contact plate (416), the upper side of the fixed plate (405) is fixedly connected with two L-shaped blocks (418), the two L-shaped blocks (418) are rotatably connected with a control rod (420), the outer side of the control rod (420) is fixedly connected with a cam (419), the upper side of the fixed plate (405) is rotatably connected with a rotating shaft (412), the upper end of the rotating shaft (412) is fixedly connected with a cam (413), the upper side of the cam (413) is rotatably connected with a connecting plate (414), the connecting plate (414) is rotatably connected with the sliding plate (402), and the right side of the feeding box (409) is provided with a discharge port (430).
2. A mill plant vibratory feeder as claimed in claim 1 wherein, The outer side of the sliding plate (402) and the inner wall of the chute (401) are fixedly connected with a spring (404).
3. A mill plant vibratory feeder as defined in claim 1 wherein, The contact plate (416) and the fixed plate (405) are fixedly connected with a spring (417), and the moving rod (415) and the fixed plate (405) are slidably connected.
4. A mill plant vibratory feeder as defined in claim 1 wherein, The rear end of the control rod (420) penetrates through the rear side of the L-shaped block (418) and is fixedly connected with a gear (421), the upper side of the fixed plate (405) is fixedly connected with a mounting rod (423), and the upper end of the mounting rod (423) is fixedly connected with a toothed plate (424).
5. A mill plant vibratory feeder as defined in claim 4 wherein, The toothed plate (424) is meshingly connected with the gear (421).
6. A mill plant vibratory feeder as defined in claim 1 wherein, The outer side of the contact plate (416) is fixedly connected with an arc-shaped block, and the contact plate (416) abuts against the cam (419).
7. A mill plant vibratory feeder as defined in claim 1 wherein, The control panel (428) is provided with an inclined structure.
8. A mill plant vibratory feeder as defined in claim 1 wherein, The right side of the feeding box (409) is fixedly connected with a guide plate (411).