Feeding device with quantitative structure for low-phosphorus chemical nickel

By designing a feeding device for anti-stack components and loose components, the problem of material agglomeration in the low-phosphorus chemical nickel feeding device is solved, and the uniform quantitative addition and stable discharge of materials are achieved, which improves the effectiveness of the device.

CN223280939UActive Publication Date: 2025-08-29HUACHUANG ELECTRONIC MATERIALS (YANCHENG) CO LTD
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Patent Information

Application Number
CN202423124200.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-18
Publication Date
2025-08-29
Estimated Expiration
2034-12-18

AI Technical Summary

Technical Problem

During the use of the existing low-phosphorus chemical nickel feeding device, chemical nickel is prone to precipitation and agglomeration inside the cylindrical cylinder, resulting in poor subsequent discharge, affecting the quantitative addition effect.

Method used

A feeding device including anti-stack assembly and loose assembly is designed. The reciprocating threaded rod is driven by a motor to rotate, which drives the bristles and arc-shaped compression blocks to vibrate, prevent material from accumulating and agglomerating, and periodically squeezes the triggering tough plate through the arc-shaped rubbing block to achieve uniform and unblocking of the material.

Benefits of technology

The uniform quantitative addition of low-phosphorus chemical nickel is achieved, which prevents material agglomeration, improves the stability and practicality of the feeding device, and ensures smooth input and discharge of the material.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of low-phosphorus chemical nickel, and discloses a feeding device with a quantitative structure for low-phosphorus chemical nickel, which comprises a machine body, the outer wall of the machine body is fixedly connected with a motor I, and the output end of the motor I penetrates through the machine body and is fixedly connected with a rotary drum; during feeding, a second motor can be started to drive a reciprocating threaded rod to rotate, so that a protected and limited threaded sliding block moves, then bristles on a tough plate can touch materials attached to a discharging opening and the wall of a material passing groove, and feeding can be more uniform and smoother; a sliding rod can stably move on the inner wall of a guide groove when a threaded sliding block moves, so that an extrusion arc block on a transmission plate can rub an arc-shaped pressed block, bristles can further touch materials attached to a discharging opening and the wall of a material passing groove through vibration, feeding can be further smooth, and the feeding efficiency is improved. And non-uniform material input caused by blocking is prevented.
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Description

Technical Field

[0001] The utility model relates to the technical field of low-phosphorus chemical nickel, in particular to a feeding device for low-phosphorus chemical nickel with a quantitative structure. Background Art

[0002] Chemical nickel is a nickel-phosphorus alloy coating. It is classified according to the phosphorus content (by weight) in the coating: low-phosphorus chemical nickel, medium-phosphorus chemical nickel, and high-phosphorus chemical nickel. Low-phosphorus chemical nickel has a phosphorus content of 1%-4%, resulting in a coating with high hardness, wear resistance, and particularly resistance to alkali corrosion. The resulting coating is dark in color and highly weldable. Low-phosphorus chemical nickel can improve the weldability of many light metal components, leading to its widespread use in the electronics field. Low-phosphorus chemical nickel coatings, due to their exceptional wear resistance, are also often used on wear parts, such as mechanical components.

[0003] According to a feeding device for low-phosphorus chemical nickel disclosed (Announcement No.: CN220460585U), the above application includes a driving mechanism including a gear plate fixed on the front side of the cylindrical cylinder, the front side of the cylindrical cylinder protruding an arc-shaped groove front end face, the gear plate is engaged with the left gear, the gear is fixed on the motor shaft of the rear drive motor, and the drive motor is fixed on the top surface of the box body. When feeding, the drive motor is controlled by the distribution box to drive the gear to rotate to the left, and then drive the gear plate to rotate to the right, so that the second discharge port rotates to the bottom and overlaps with the first discharge port, then the powdered raw material in the cavity can slide to the second discharge port at the bottom and fall into the box body below, thereby playing the role of quantitative addition. After the addition is completed, the drive motor drives the gear plate to reset, which can seal the first discharge port to prevent harmful gas from overflowing.

[0004] However, in actual use, although the above-mentioned equipment can play the role of quantitative addition and avoid the overflow of harmful gases, the chemical nickel is prone to precipitation and agglomeration when it accumulates and does not move inside the cylindrical barrel, which makes it easy for the agglomerated chemical nickel to be unable to be discharged normally when the discharge port is opened later. In view of this, we propose a feeding device with a quantitative structure for low-phosphorus chemical nickel. Utility Model Content

[0005] The purpose of the utility model is to provide a feeding device for low-phosphorus chemical nickel with a quantitative structure to solve the problems raised in the above background technology.

[0006] To achieve the above-mentioned purpose, the utility model provides the following technical solutions: a feeding device for low-phosphorus chemical nickel with a quantitative structure, comprising a body, an outer wall of the body is fixedly connected to a motor 1, an output end of the motor 1 passes through the body and is fixedly connected to a rotating drum, an outer wall of the rotating drum is provided with a feed valve port, an outer wall of the rotating drum is provided with a discharge port, an outer wall of the body is provided with a material trough, an inner wall of the rotating drum is provided with an anti-stacking assembly, the anti-stacking assembly comprises a fixed frame, the fixed frame is fixedly connected to the outer wall of the body, the outer wall of the fixed frame is fixedly connected to a fixed cover, the outer wall of the fixed frame is fixedly connected to a motor 2, the output end of the motor 2 passes through the fixed cover and is fixedly connected to a reciprocating threaded rod, the inner wall of the fixed cover is fixedly connected to a protective cover, the end of the protective cover is fixedly connected to a fixed disk, and the inner wall of the protective cover is provided with a guide groove;

[0007] A threaded slider, the threaded slider is threadedly connected to the outer wall of the reciprocating threaded rod, the outer wall of the threaded slider is fixedly connected to a fixed plate, the end of the fixed plate is fixedly connected to a tough plate, the outer wall of the tough plate is fixedly connected to an arc-shaped pressure block, the outer wall of the tough plate is fixedly connected to bristles, the outer wall of the threaded slider is fixedly connected to a fixed sleeve, the inner wall of the fixed sleeve is slidably connected to a sliding block, the end of the sliding block is fixedly connected to a sliding rod, the outer wall of the sliding block is fixedly connected to a transmission plate, and the outer wall of the transmission plate is fixedly connected to an extrusion arc block.

[0008] Preferably, the outer wall of the sliding rod is slidably connected to the inner wall of the guide groove, and the guide groove is configured to be wavy, so that the sliding rod can be smoothly displaced on the inner wall of the guide groove.

[0009] Preferably, the number of the arc-shaped pressure blocks is several, and the several arc-shaped pressure blocks are arranged in a linear array on the outer wall of the tough plate.

[0010] Preferably, the center line of the reciprocating threaded rod and the center line of the fixed disk are on the same straight line, so that the reciprocating threaded rod can rotate smoothly.

[0011] Preferably, a loosening assembly is provided on the inner wall of the rotating drum, and the loosening assembly includes an arc-shaped rubbing block, the arc-shaped rubbing block is fixedly connected to the inner wall of the rotating drum, and a touch plate is fixedly connected to the outer wall of the tough plate.

[0012] Preferably, the number of the touch plates is several, and the touch plates are mirror-imaged on both sides of the center plane of the tough plate.

[0013] Compared with the prior art, the present invention provides a feeding device for low-phosphorus chemical nickel with a quantitative structure, which has the following beneficial effects:

[0014] 1. The feeding device for low-phosphorus chemical nickel with a quantitative structure can start motor 2 to drive the reciprocating threaded rod to rotate when feeding, so that the protected and limited threaded slider is displaced, and then the bristles on the toughness plate can touch the material attached to the discharge port and the wall of the material trough, so that the feeding can be more uniform and smooth, and when the threaded slider is displaced, the sliding rod can be smoothly displaced on the inner wall of the guide groove, so that the extrusion arc block on the transmission plate can rub the arc-shaped pressure block, and then the bristles can further touch the material attached to the discharge port and the wall of the material trough through vibration, so that the feeding can be further smooth, and prevent blockage and uneven material input.

[0015] 2. The feeding device for low-phosphorus chemical nickel with a quantitative structure, when the motor is started without feeding to drive the drum to rotate, the arc-shaped rubbing blocks on the inner wall of the drum will periodically squeeze and touch the tough plate, so that when the tough plate is touched, it drives the touch plate to vibrate and displace synchronously, and finally the touch plate can better loosen and touch the accumulated materials, so that the materials will not accumulate and clump and be difficult to discharge, thereby further improving the overall stability and practicality. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 This is a schematic diagram of the overall structure of the utility model;

[0017] Figure 2 This is a schematic diagram of the structure of the material chute and motor of the utility model;

[0018] Figure 3 This is a schematic diagram of the structure of the discharge port and feed valve port of the utility model;

[0019] Figure 4 This is a schematic diagram of the structure of the reciprocating threaded rod and threaded slider of the utility model;

[0020] Figure 5 This is a schematic diagram of the structure of the bristles and the arc-shaped pressure block of the utility model;

[0021] Figure 6 This is a schematic diagram of the structure of the threaded slider and the fixed sleeve of the utility model;

[0022] Figure 7 This is a schematic diagram of the transmission plate and extrusion arc block structure of the utility model.

[0023] In the figure: 1. Machine body; 2. Motor 1; 3. Rotating drum; 4. Feed valve port; 5. Discharge port; 6. Material chute; 7. Anti-stacking assembly; 701. Fixed frame; 702. Fixed cover; 703. Motor 2; 704. Protective cover; 705. Fixed plate; 706. Guide groove; 707. Reciprocating threaded rod; 708. Threaded slider; 709. Fixed plate; 710. Tough plate; 711. Arc-shaped pressure block; 712. Bristles; 713. Fixed sleeve; 714. Sliding block; 715. Sliding rod; 716. Transmission plate; 717. Extrusion arc block; 8. Loosening assembly; 801. Arc-shaped rubbing block; 802. Touch plate. DETAILED DESCRIPTION

[0024] like Figure 1-Figure 7 As shown, the utility model provides a technical solution: a feeding device for low-phosphorus chemical nickel with a quantitative structure, comprising a body 1, the outer wall of the body 1 is fixedly connected to a motor 2, the output end of the motor 2 passes through the body 1 and is fixedly connected to a rotating drum 3, the outer wall of the rotating drum 3 is provided with a feed valve port 4, the outer wall of the rotating drum 3 is provided with a discharge port 5, the outer wall of the body 1 is provided with a material trough 6, the inner wall of the rotating drum 3 is provided with an anti-stacking component 7, the anti-stacking component 7 comprises a fixed frame 701, the fixed frame 701 is fixedly connected to the outer wall of the body 1, the outer wall of the fixed frame 701 is fixedly connected to a fixed cover 702, the outer wall of the fixed frame 701 is fixedly connected to a motor 2 703, the output end of the motor 2 703 passes through the fixed cover 702 and is fixedly connected to a reciprocating threaded rod 707, the inner wall of the fixed cover 702 is fixedly connected to a protective cover 704, the end of the protective cover 704 is fixedly connected to a fixed disk 705, and the inner wall of the protective cover 704 is provided with a guide groove 706.

[0025] Furthermore, the threaded slider 708 is threadedly connected to the outer wall of the reciprocating threaded rod 707, the outer wall of the threaded slider 708 is fixedly connected to a fixed plate 709, the end of the fixed plate 709 is fixedly connected to a tough plate 710, the outer wall of the tough plate 710 is fixedly connected to an arc-shaped pressure block 711, the outer wall of the tough plate 710 is fixedly connected to bristles 712, the outer wall of the threaded slider 708 is fixedly connected to a fixed sleeve 713, the inner wall of the fixed sleeve 713 is slidably connected to a sliding block 714, the end of the sliding block 714 is fixedly connected to a sliding rod 715, the outer wall of the sliding block 714 is fixedly connected to a transmission plate 716, and the outer wall of the transmission plate 716 is fixedly connected to an extrusion arc block 717.

[0026] In an embodiment of the present invention, the outer wall of the sliding rod 715 is slidably connected to the inner wall of the guide groove 706, and the guide groove 706 is set to be wavy, so that the sliding rod 715 can be smoothly displaced on the inner wall of the guide groove 706, and the number of arc-shaped pressure blocks 711 is set is several, and several arc-shaped pressure blocks 711 are arranged in a linear array on the outer wall of the tough plate 710, and the center line of the reciprocating threaded rod 707 and the center line of the fixed disk 705 are on the same straight line, so that the reciprocating threaded rod 707 can rotate smoothly.

[0027] In addition, a loosening component 8 is provided on the inner wall of the rotating drum 3, and the loosening component 8 includes an arc-shaped rubbing block 801, which is fixedly connected to the inner wall of the rotating drum 3. The outer wall of the tough plate 710 is fixedly connected with a touch plate 802. There are several touch plates 802, and the several touch plates 802 are mirrored on both sides of the center plane of the tough plate 710.

[0028] In the present invention, during daily use, materials can be fed in through the feed valve port 4, and when not feeding, the motor 1 2 can be started to drive the drum 3 to rotate, so that the discharge port 5 and the feed trough 6 do not overlap, and when feeding, the motor 1 2 can be started to drive the drum 3 to rotate, so that the discharge port 5 and the feed trough 6 overlap, and when feeding, the motor 2 703 can be started to drive the reciprocating threaded rod 707 to rotate, so that the protected and limited threaded slider 708 is displaced, thereby making the toughness plate 710 The bristles 712 on it can touch the material attached to the wall of the discharge port 5 and the material trough 6, so that the feeding can be more uniform and smooth, and when the threaded slider 708 is displaced, the sliding rod 715 can be smoothly displaced on the inner wall of the guide groove 706, so that the extrusion arc block 717 on the transmission plate 716 can rub the arc pressure block 711, and then through vibration, the bristles 712 can further touch down the material attached to the wall of the discharge port 5 and the material trough 6, so that the feeding can be further smooth, and blockage is prevented so that the material input is uneven.

[0029] When the motor 2 is started without adding materials to drive the drum 3 to rotate, the arc-shaped rubbing block 801 on the inner wall of the drum 3 will periodically squeeze and touch the tough plate 710, so that when the tough plate 710 is touched, it will drive the touch plate 802 to vibrate and displace synchronously, and finally the touch plate 802 can better loosen and touch the accumulated materials, so that the materials will not accumulate and clump and be difficult to discharge.

[0030] The above generally describes the present invention in detail. However, it is obvious to those skilled in the art that modifications or improvements may be made to the present invention. Therefore, modifications or improvements that do not depart from the spirit of the present invention are within the scope of protection of the present invention.

Claims

1. A feeding device for low-phosphorus chemical nickel with a quantitative structure, comprising a body (1), an outer wall of the body (1) is fixedly connected to a motor (2), an output end of the motor (2) passes through the body (1) and is fixedly connected to a rotating drum (3), the outer wall of the rotating drum (3) is provided with a feed valve port (4), the outer wall of the rotating drum (3) is provided with a discharge port (5), and the outer wall of the body (1) is provided with a feed trough (6), characterized in that: The inner wall of the rotating drum (3) is provided with an anti-stacking component (7), and the anti-stacking component (7) comprises: A fixing frame (701), the fixing frame (701) is fixedly connected to the outer wall of the machine body (1), the outer wall of the fixing frame (701) is fixedly connected to a fixing cover (702), the outer wall of the fixing frame (701) is fixedly connected to a second motor (703), the output end of the second motor (703) passes through the fixing cover (702) and is fixedly connected to a reciprocating threaded rod (707), the inner wall of the fixing cover (702) is fixedly connected to a protective cover (704), the end of the protective cover (704) is fixedly connected to a fixing plate (705), and the inner wall of the protective cover (704) is provided with a guide groove (706); A threaded slider (708) is threadedly connected to the outer wall of the reciprocating threaded rod (707); the outer wall of the threaded slider (708) is fixedly connected to a fixed plate (709); the end of the fixed plate (709) is fixedly connected to a tough plate (710); the outer wall of the tough plate (710) is fixedly connected to an arc-shaped pressure block (711); the outer wall of the tough plate (710) is fixedly connected to bristles (712); the outer wall of the threaded slider (708) is fixedly connected to a fixed sleeve (713); the inner wall of the fixed sleeve (713) is slidably connected to a sliding block (714); the end of the sliding block (714) is fixedly connected to a sliding rod (715); the outer wall of the sliding block (714) is fixedly connected to a transmission plate (716); the outer wall of the transmission plate (716) is fixedly connected to an extrusion arc block (717).

2. The feeding device for low-phosphorus chemical nickel with a quantitative structure according to claim 1, characterized in that: The outer wall of the sliding rod (715) is slidably connected to the inner wall of the guide groove (706), and the guide groove (706) is configured to be wavy.

3. The feeding device for low-phosphorus chemical nickel with a quantitative structure according to claim 1, characterized in that: The number of the arc-shaped pressure blocks (711) is several, and the arc-shaped pressure blocks (711) are arranged in a linear array on the outer wall of the tough plate (710).

4. The feeding device for low-phosphorus chemical nickel with a quantitative structure according to claim 1, characterized in that: The center line of the reciprocating threaded rod (707) and the center line of the fixed disk (705) are both on the same straight line.

5. The feeding device for low-phosphorus chemical nickel with a quantitative structure according to claim 1, characterized in that: The inner wall of the rotating drum (3) is provided with a loosening assembly (8), and the loosening assembly (8) includes an arc-shaped rubbing block (801). The arc-shaped rubbing block (801) is fixedly connected to the inner wall of the rotating drum (3), and the outer wall of the tough plate (710) is fixedly connected to a touch plate (802).

6. The feeding device for low-phosphorus chemical nickel with a quantitative structure according to claim 5, characterized in that: The number of the touch plates (802) is several, and the touch plates (802) are mirror-imaged on both sides of the center plane of the tough plate (710).

Citation Information

Patent Citations

  • Feeding device for low-phosphorus chemical nickel

    CN220460585U