Vibrating disc feeding equipment for stainless steel corrugated pipe nut machining
By introducing a damping cavity and slider system into the vibratory feeder, the horizontal state of the vibrator is automatically adjusted, which solves the problem of unstable nut conveying caused by the tilt of the vibratory feeder and improves the accuracy and efficiency of nut processing and assembly.
Patent Information
- Application Number
- CN202520224991.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-13
- Publication Date
- 2025-12-05
- Estimated Expiration
- 2035-02-13
AI Technical Summary
When the vibratory feeder is tilted, the movement trajectory of the nut changes, affecting the posture and sequence of the nut entering the discharge port, reducing the accuracy of subsequent processing or assembly, and increasing the defect rate.
The structure includes a top plate, a vibrator, and a base. It uses a damping cavity and a slider system to automatically adjust the level of the vibrator. The top plate is kept level through a damping suction and sliding mechanism to ensure smooth delivery of the nuts.
Maintaining the top plate level in uneven areas ensures smooth nut delivery, improves processing and assembly accuracy, and reduces the defect rate.
Smart Images

Figure CN223632377U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the technical field of vibratory feeders, and more specifically, it relates to a vibratory feeder feeding device for processing stainless steel corrugated pipe nuts. Background Technology
[0002] In large-scale nut processing or assembly production lines, it is necessary to continuously and stably supply nuts to processing equipment or assembly stations. Nut vibratory feeders can automatically arrange and transport a large number of disordered nuts to designated positions through their own vibration, achieving an efficient feeding process, greatly improving production efficiency, and reducing the time and labor intensity of manual feeding.
[0003] In real life, vibratory feeders may tilt due to external terrain. When the vibratory feeder tilts, it will change the movement trajectory of the nuts on the track, and the originally designed nut arrangement and conveying method will be disturbed. This will cause the nuts to be unable to enter the discharge port in the correct posture and order, which will seriously affect the accuracy of subsequent processing or assembly. For example, on an automated assembly line, a tilted vibratory feeder may cause the nuts to not be able to fit accurately with other parts, thereby reducing product quality and increasing the defect rate.
[0004] Therefore, in view of this, we have studied and improved the existing structure and its shortcomings, and provided a vibratory feeder feeding device for processing stainless steel corrugated pipe nuts, in order to achieve a more practical purpose. Utility Model Content
[0005] This utility model provides a vibratory feeder for processing stainless steel corrugated pipe nuts, which overcomes the above-mentioned defects in the prior art.
[0006] The purpose and effect of this utility model, a vibratory feeder for processing stainless steel corrugated pipe nuts, are achieved by the following specific technical means:
[0007] The utility model provides a kind of vibration disc feeding equipment for stainless steel corrugated pipe nut processing, including top disc, vibrator and base, the top disc is fixedly arranged on vibrator upper side, the base is arranged on vibrator lower side, the empty slot is arranged in the base, the vibrator is placed in the empty slot, the base is provided with a plurality of second damping cavities and first damping cavities, the inner wall of the first damping cavity is provided with opening upwards, a plurality of the first damping cavity is slidably provided with first sliding plate, the first sliding plate is fixedly provided with slide rod, the first damping cavity is fixedly provided with first spring, the first spring is fixedly connected with the first sliding plate, a plurality of the slide rod is provided with mounting plate, the slide rod and the mounting plate are hinged, the vibrator and the mounting plate are fixedly connected, the second damping cavity is provided with through port downwards, the second damping cavity is slidably provided with first sliding block, the second damping cavity is fixedly provided with second spring, the second spring is fixedly connected with the first sliding block, the lower side of the second damping cavity and the lower side of the first damping cavity are connected by first liquid passage pipe.
[0008] Further technical solutions, the first circular ring is sleeved outside the vibrator, a plurality of third damping cavities are arranged on the longitudinal wall of the base, a second sliding plate is slidably arranged in the third damping cavity, a third spring is fixedly arranged in the third damping cavity, the third spring is fixedly connected with the second sliding plate, the third damping cavity is provided with a through hole towards the first circular ring side, a connecting rod is fixedly arranged on the second sliding plate, the connecting rod passes through the through hole, one end of the connecting rod is connected with the second sliding plate, the other end of the connecting rod is connected with the first circular ring, the lower side of the second damping cavity and the third damping cavity are communicated by the second liquid passage pipe.
[0009] Further technical solutions, a plurality of rubber blocks are arranged between the mounting plate and the base, a cavity is arranged in the rubber block, a rubber rod is slidably arranged in the cavity, a fourth spring is fixedly arranged in the cavity, the fourth spring is fixedly connected with the rubber rod.
[0010] Further technical solutions, a damping spring is arranged between the rubber block and the mounting plate, one end of the damping spring is connected with the mounting plate, the other end of the damping spring is fixedly connected with the rubber block.
[0011] Further technical solutions, a convex plate spirally upwards is arranged in the top disc, a fixed circular ring is fixedly arranged inside the convex plate, a second circular ring is sleeved outside the fixed circular ring, a plurality of openings are arranged on the second circular ring, a gas bag is arranged between the fixed circular ring and the second circular ring.
[0012] Further technical solutions, an elastic smooth surface is arranged on the inner ring surface of the first circular ring, the elastic smooth surface is in contact with the vibrator.
[0013] Further technical solutions, a plurality of the first slider bottom is provided with rubber pad, the rubber pad and the first slider fixedly connected.
[0014] Further technical solutions, the top disc is provided with a cap outlet, the cap outlet is fixedly provided with a cap rack.
[0015] Further technical solutions, the vibrator wall is provided with a controller, the controller controls the vibration of the vibrator.
[0016] Further technical solutions, the bottom side is fixedly provided with a plurality of support frames, and the lower side of the support frame is fixedly provided with a rubber pad.
[0017] Compared with the prior art, the utility model has the advantages of:
[0018] The device is placed in the working area, when the area is not flat, the base is inclined, the ground at a high place will contact the first slider, the first slider is pressed inward, the sliding of the first slider will suck the damping in the first damping cavity, when the damping is sucked out, the slide rod will descend, and the side close to the slide rod will also descend, the ground at a low place cannot directly contact other first sliders, other first sliders slide downward under the action of the second spring, the damping in the second damping cavity at a low place is pressed into the first damping cavity, the slide rod moves upward, the other side close to the slide rod rises, the vibration of the top disc caused by the inclined road surface can be avoided, the top disc is kept in a horizontal state at all times, the subsequent processing progress and assembly precision are ensured, the product quality is improved, and the rate of defective products is reduced. BRIEF DESCRIPTION OF DRAWINGS
[0019] Figure 1 It is the three-dimensional structure schematic diagram of the utility model.
[0020] Figure 2 It is the front view structure schematic diagram of the utility model.
[0021] Figure 3 It is Figure 2 A-A cross section structure schematic diagram of.
[0022] Figure 4 It is Figure 3 The enlarged structure schematic diagram of A in.
[0023] Figure 5 It is Figure 3 The enlarged structure schematic diagram of B in.
[0024] Figure 6 It is Figure 3 The enlarged structure schematic diagram of C in.
[0025] Figure 7is a cross-sectional structure diagram of the top disc.
[0026] In the figure, the top disc 11, the base 12, the vibrator 13, the cap rack 14, the support frame 15, the controller 16, the first sliding block 17, the first damping cavity 18, the first sliding plate 19, the sliding rod 20, the first spring 21, the first liquid pipe 22, the second damping cavity 23, the second spring 24, the second liquid pipe 25, the empty slot 26, the mounting plate 27, the third damping cavity 28, the second sliding plate 29, the third spring 30, the first circular ring 31, the connecting rod 32, the damping spring 33, the rubber rod 34, the rubber block 35, the cavity 36, the fourth spring 37, the second circular ring 38, the air bag 39, and the fixed circular ring 40. DETAILED DESCRIPTION
[0027] The embodiments of the present application will be further described below in conjunction with the drawings and examples. The following examples are used to illustrate the present application, but cannot be used to limit the scope of the present application.
[0028] In the description of the present application, unless otherwise specified, the meaning of "a plurality of" is two or more; the terms "upper", "lower", "left", "right", "inner", "outer", "front end", "rear end", "head", "tail" and the like indicate the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, and cannot be understood as indicating or implying that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as limiting the present application. In addition, the terms "first", "second", "third" and the like are only for descriptive purposes and cannot be understood as indicating or implying relative importance.
[0029] In the description of the present application, it should be noted that, unless otherwise specified and limited, the terms "connected", "connected" should be understood broadly, for example, it can be fixedly connected, or it can be detachably connected, or integrally connected; it can be mechanically connected, or it can be electrically connected; it can be directly connected, or it can be indirectly connected through an intermediate medium. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.
[0030] The utility model provides a kind of vibration disc feeding equipment for stainless steel corrugated pipe nut machining, refer to attached Figure 1 to attached Figure 7The utility model provides a kind of stainless steel corrugated pipe nut processing vibration disc feeding equipment, including top disc 11, vibrator 13 and base 12, vibrator 13 upper side is fixedly provided with top disc 11, vibrator 13 lower side is provided with base 12, base 12 is provided with empty slot 26, vibrator 13 is placed in empty slot 26, base 12 is provided with a plurality of second damping cavity 23 and first damping cavity 18, the inner wall of first damping cavity 18 is provided with opening upwards, a plurality of first damping cavity 18 are slidably provided with first sliding plate 19, first sliding plate 19 is fixedly provided with slide bar 20, first damping cavity 18 is fixedly provided with first spring 21, first spring 21 and first sliding plate 19 are fixedly connected, a plurality of slide bars 20 are provided with mounting plate 27, slide bar 20 and mounting plate 27 are hinged, vibrator 13 and mounting plate 27 are fixedly connected, second damping cavity 23 is provided with through port downwards, first sliding block 17 is slidably arranged in second damping cavity 23, second damping cavity 23 is fixedly provided with second spring 24, second spring 24 and first sliding block 17 are fixedly connected, the lower side of second damping cavity 23 and the lower side of first damping cavity 18 are connected by first liquid pipe 22.
[0031] Further technical solutions, the outer side of vibrator 13 is sleeved with first circular ring 31, the longitudinal wall of base 12 is provided with a plurality of third damping cavities 28, the second sliding plate 29 is slidably arranged in the third damping cavity 28, the third damping cavity 28 is fixedly provided with third spring 30, the third spring 30 and the second sliding plate 29 are fixedly connected, the third damping cavity 28 is provided with a through hole towards the first circular ring 31 side, the connecting rod 32 is fixedly arranged on the second sliding plate 29, the connecting rod 32 passes through the through hole, one end of the connecting rod 32 is connected with the second sliding plate 29, the other end of the connecting rod 32 is connected with the first circular ring 31, the lower side of the second damping cavity 23 and the third damping cavity 28 are communicated by the second liquid pipe 25.
[0032] Further technical solutions, a plurality of rubber blocks 35 are arranged between the mounting plate 27 and the base 12, the rubber block 35 is provided with a cavity 36, the rubber rod 34 is slidably arranged in the cavity 36, the fourth spring 37 is fixedly arranged in the cavity 36, and the fourth spring 37 and the rubber rod 34 are fixedly connected.
[0033] Further technical solutions, a plurality of rubber blocks 35 are arranged between the mounting plate 27 and the base 12, the rubber block 35 is provided with a cavity 36, the rubber rod 34 is slidably arranged in the cavity 36, the fourth spring 37 is fixedly arranged in the cavity 36, and the fourth spring 37 and the rubber rod 34 are fixedly connected.
[0034] Further technical solutions, the top disc 11 is provided with a convex plate spirally upwards, the inner side of the convex plate is fixedly provided with a fixed circular ring 40, the fixed circular ring 40 is sleeved with a second circular ring 38, a plurality of openings are arranged on the second circular ring 38, and the gas bag 39 is arranged between the fixed circular ring 40 and the second circular ring 38.
[0035] Further technical solutions, the first annular ring 31 inner surface is provided with elastic smooth surface, and the elastic smooth surface is in contact with the vibrator 13.
[0036] Further technical solutions, the bottom of the plurality of first sliders 17 is provided with rubber pads, and the rubber pads are fixedly connected with the first sliders 17.
[0037] Further technical solutions, the top disc 11 is provided with a cap outlet, and the cap outlet is fixedly provided with a cap rack 14.
[0038] Further technical solutions, the wall body of the vibrator 13 is provided with a controller 16, and the controller 16 controls the vibration of the vibrator 13.
[0039] Further technical solutions, the bottom of the plurality of first sliders 17 is provided with rubber pads, and the rubber pads are fixedly connected with the first sliders 17.
[0040] The specific use method of the utility model is:
[0041] The device is placed in the working area, when the area is not flat, the base 12 is inclined, the ground at the high place will be in contact with the first slider 17, the first slider 17 is pressed inward, the sliding of the first slider 17 will suck the damping in the first damping cavity 18, when the damping is sucked out, the sliding rod 20 will descend, and at the same time, the side close to the descending sliding rod 20 is also lowered, and the ground at the low place cannot be in direct contact with other first sliders 17, and other first sliders 17 slide downward under the action of the second spring 24, and the damping in the second damping cavity 23 at the low place is pressed into the first spring 21, so that the sliding rod 20 moves upward, the side close to the other side rises, the influence of the inclined road surface on the vibration discharge of the top disc 11 can be avoided, and the top disc 11 is ensured to be in a horizontal state at all times.
[0042] When the first slider 17 slides downward, part of the damping liquid in the second damping cavity 23 is pressed into the third damping cavity 28, the third damping cavity 28 drives the second sliding plate 29 to slide, the second sliding plate 29 drives the connecting rod 32 to slide, the connecting rod 32 drives the first annular ring 31, and the first annular ring 31 drives the vibrator 13, and the sliding rod 20 can quickly adjust the vibrator 13 to a horizontal position, the working efficiency is improved, and the vibrator 13 is prevented from tilting.
[0043] When the subsequent vibrator 13 starts the vibration operation, the vibrator 13 first presses the mounting plate 27, the mounting plate 27 presses the damping spring 33 and the rubber rod 34, the damping spring 33 and the rubber rod 34 can offset the vibration, when the vibration amplitude increases, the mounting plate 27 continues to press downward, the rubber rod 34 presses the fourth spring 37, and at the same time, the rubber block 35 deforms, and the vibration force is further offset.
Claims
1. A vibratory feeder for processing stainless steel corrugated pipe nuts, characterized in that: The device includes a top plate (11), a vibrator (13), and a base (12). The top plate (11) is fixedly mounted on the upper side of the vibrator (13), and the base (12) is mounted on the lower side of the vibrator (13). A slot (26) is provided inside the base (12), and the vibrator (13) is placed in the slot (26). The base (12) is provided with multiple second damping cavities (23) and first damping cavities (18). The inner wall of the first damping cavity (18) is provided with an upward opening. A first sliding plate (19) is slidably mounted in each of the multiple first damping cavities (18). A sliding rod (20) is fixedly mounted on the first sliding plate (19), and a first spring is fixedly mounted in the first damping cavity (18). (21) The first spring (21) and the first slide plate (19) are fixedly connected. A mounting plate (27) is provided on a plurality of slide rods (20). The slide rods (20) and the mounting plate (27) are hinged. The vibrator (13) and the mounting plate (27) are fixedly connected. The second damping cavity (23) is provided with a downward through port. A first slider (17) is slidably provided in the second damping cavity (23). A second spring (24) is fixedly provided in the second damping cavity (23). The second spring (24) and the first slider (17) are fixedly connected. The lower side of the second damping cavity (23) and the lower side of the first damping cavity (18) are connected by a first liquid pipe (22).
2. The vibratory feeder for processing stainless steel corrugated pipe nuts according to claim 1, characterized in that: The vibrator (13) is fitted with a first ring (31) on its outer side. The base (12) has a plurality of third damping cavities (28) on its longitudinal wall. A second sliding plate (29) is slidably disposed in the third damping cavity (28). A third spring (30) is fixedly disposed in the third damping cavity (28). The third spring (30) and the second sliding plate (29) are fixedly connected. The third damping cavity (28) has a through-hole facing the first ring (31). A connecting rod (32) is fixedly disposed on the second sliding plate (29). The connecting rod (32) passes through the through-hole. One end of the connecting rod (32) is connected to the second sliding plate (29). The other end of the connecting rod (32) is connected to the first ring (31). The lower side of the second damping cavity (23) and the third damping cavity (28) are connected through a second liquid pipe (25).
3. The vibratory feeder feeding device for processing stainless steel corrugated pipe nuts according to claim 2, characterized in that: Multiple rubber blocks (35) are provided between the mounting plate (27) and the base (12). A cavity (36) is provided inside the rubber block (35). A rubber rod (34) is slidably provided inside the cavity (36). A fourth spring (37) is fixedly provided inside the cavity (36). The fourth spring (37) and the rubber rod (34) are fixedly connected.
4. The vibratory feeder feeding device for processing stainless steel corrugated pipe nuts according to claim 3, characterized in that: A shock-absorbing spring (33) is provided between the rubber block (35) and the mounting plate (27). One end of the shock-absorbing spring (33) is connected to the mounting plate (27), and the other end of the shock-absorbing spring (33) is fixedly connected to the rubber block (35).
5. The vibratory feeder for processing stainless steel corrugated pipe nuts according to claim 4, characterized in that: The top plate (11) is provided with a spirally upward protruding plate. A fixing ring (40) is fixedly provided on the inner side of the protruding plate. A second ring (38) is sleeved on the fixing ring (40). The second ring (38) is provided with multiple openings. An airbag (39) is provided between the fixing ring (40) and the second ring (38).
6. The vibratory feeder feeding device for processing stainless steel corrugated pipe nuts according to claim 3, characterized in that: The inner ring surface of the first ring (31) is provided with an elastic smooth surface, which abuts against the vibrator (13).
7. The vibratory feeder feeding device for processing stainless steel corrugated pipe nuts according to claim 5, characterized in that: A rubber pad is provided at the bottom of a plurality of the first sliders (17), and the rubber pad is fixedly connected to the first sliders (17).
8. The vibratory feeder feeding device for processing stainless steel corrugated pipe nuts according to claim 7, characterized in that: The top plate (11) is provided with a cap outlet, and a cap outlet frame (14) is fixedly provided at the cap outlet.
9. The vibratory feeder for processing stainless steel corrugated pipe nuts according to claim 4, characterized in that: A controller (16) is provided on the wall of the vibrator (13), and the controller (16) controls the vibration of the vibrator (13).
10. A vibratory feeder for processing stainless steel corrugated pipe nuts according to claim 8, characterized in that: Multiple support frames (15) are fixedly installed on the lower side of the base (12), and rubber pads are fixedly installed on the lower side of the support frames (15).