A stack plate type copper powder storage barrel vibration device facilitating fixing of barrels of multiple specifications
Patent Information
- Application Number
- CN202522295690.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-30
- Publication Date
- 2026-09-25
- Estimated Expiration
- 2035-10-30
AI Technical Summary
[0005]为解决现有振动装置需要针对不同桶径进行调整与适配,操作步骤繁琐,导致工作效率低下的技术问题,本实用新型提供了一种便于固定多规格桶体的栈板式铜粉存储桶振动装置
1、本实用新型通过将振动马达安装于底板下表面中心位置,作业人员仅需将铜粉储料桶放置于对应的底板上,再利用搭扣锁紧桶身即可启动振动作业。振动马达的激振力通过底板均匀传递至整个桶体,有效避免了传统方式中需针对不同桶径反复调整安装位置与锁紧机构的繁琐操作,显著提升了设备对不同规格储料桶的适应性与作业效率。
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Figure CN224797649U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of vibration equipment technology, specifically, it relates to a pallet-type copper powder storage tank vibration device that facilitates fixing multi-specification tanks. Background Technology
[0002] Copper powder refers to fine metallic particles made of pure copper. It typically appears reddish or rose-red with a metallic luster and possesses excellent electrical and thermal conductivity and ductility. It is mainly prepared through methods such as electrolysis, atomization (e.g., water atomization or gas atomization), or chemical reduction (e.g., hydrazine hydrate reduction). Based on particle size, it is classified into different types such as nano-sized and micron-sized, and its morphology can be spherical, flake-like, or irregular. Copper powder is widely used in powder metallurgy for manufacturing mechanical parts, conductive adhesives and circuit boards in the electronics industry, chemical catalysts, metal coatings, and lubricant additives, among other fields.
[0003] However, copper powder easily absorbs moisture from the air during long-term storage. When the ambient humidity is too high, moisture forms "liquid bridges" between powder particles, which causes clumping. Clumping will seriously affect the fluidity and uniformity of copper powder, leading to a decline in its performance in subsequent uses (such as powder metallurgy or preparation of conductive coatings), and even affecting the quality of the final product.
[0004] In existing technologies, copper powder storage tanks are commonly used to store copper powder. During the storage process, copper powder is prone to clumping due to factors such as environmental humidity, which affects its subsequent use. To address this, operators typically install vibration devices on the copper powder storage tanks to vibrate the copper powder inside, preventing clumping or breaking up any already clumped copper powder. However, existing copper powder storage tanks come in various diameters, requiring the vibration devices to be cumbersomely adjusted and adapted for different tank diameters. This cumbersome operation reduces work efficiency and has certain limitations. Utility Model Content
[0005] To address the technical problem that existing vibration devices require adjustment and adaptation for different barrel diameters, resulting in cumbersome operation steps and low work efficiency, this utility model provides a pallet-type copper powder storage barrel vibration device that facilitates the fixing of barrels of various specifications.
[0006] The objective of this utility model can be achieved through the following technical solutions: A vibrating device for a pallet-type copper powder storage tank that facilitates fixing multiple sizes of tanks includes a base plate and a copper powder storage tank placed on the base plate. The base plate is provided with a first square tube column, a second square tube column, a third square tube column, and a fourth square tube column. A fixing plate is provided at the center of the lower surface of the base plate. A vibration motor is bolted to the fixing plate. A first baffle and a second baffle are respectively arranged horizontally on the upper part of the third square tube column and the fourth square tube column away from the first square tube column.
[0007] Furthermore, the first square tube column, the second square tube column, the third square tube column, and the fourth square tube column form a semi-circular structure and are symmetrically arranged on the arc edge of the semi-circle.
[0008] Furthermore, hinges are provided on the upper part of the side of the third-party tube column and the fourth-party tube column away from the first-party tube column; the first baffle and the second baffle are respectively rotatably connected to the third-party tube column and the fourth-party tube column via hinges.
[0009] Furthermore, both the first and second baffles are provided with two buckles.
[0010] Furthermore, longitudinally arranged first support plates are welded to the lower surface of the base plate at positions corresponding to both ends of the fixed plate.
[0011] Furthermore, a shock-absorbing rubber layer is provided on the lower surface of the first support plate; a second support plate is provided on the lower surface of the shock-absorbing rubber layer, and the second support plate and the first support plate are connected to each other through the shock-absorbing rubber layer.
[0012] Furthermore, multiple anti-loosening nuts are provided between the shock-absorbing rubber layer and the first support plate or the second support plate.
[0013] Furthermore, both the first baffle and the second baffle are arc-shaped structures.
[0014] The beneficial effects of this utility model are: 1. This utility model, by installing the vibratory motor at the center of the lower surface of the base plate, allows operators to simply place the copper powder storage bin on the corresponding base plate and then lock the bin body using the buckle to start the vibration operation. The excitation force of the vibratory motor is evenly transmitted to the entire bin body through the base plate, effectively avoiding the cumbersome operation of repeatedly adjusting the installation position and locking mechanism for different bin diameters in traditional methods, significantly improving the equipment's adaptability to storage bins of different specifications and its operating efficiency.
[0015] 2. This utility model has two longitudinally arranged first support plates on the lower surface of the base plate, with a gap between the two first support plates, which ensures that the manual forklift forks can be smoothly inserted and operated. This not only greatly facilitates the handling of storage bins, the centralized addition of copper powder, and the replacement of empty bins, but also effectively avoids the tipping and dust leakage problems that may be caused by traditional manual handling. While improving work efficiency and safety, it realizes the mechanization and standardization of logistics transfer and increases practicality.
[0016] 3. This utility model has a shock-absorbing rubber layer at the bottom of the first support plate, and a second support plate is connected to the shock-absorbing rubber layer. Multiple anti-loosening nuts are set between the shock-absorbing rubber layer and the first or second support plate to ensure the long-term stability of the connection structure under continuous vibration. The shock-absorbing rubber layer utilizes the unique viscoelastic damping characteristics of rubber material to effectively absorb and dissipate the impact energy generated by the vibration motor during operation. At the same time, the anti-loosening nuts effectively resist the loosening of the threads caused by vibration through the locking structure, which improves the stability and reliability of the equipment operation and extends the service life of the device. Attached Figure Description
[0017] Figure 1 This is a schematic diagram of the overall structure of this utility model; Figure 2 This is a top view of the overall structure of this utility model; Figure 3 This is a side view of the overall structure of this utility model; The attached diagram lists the components represented by each number as follows: 1. Base plate; 2. Copper powder storage bin; 3. First baffle; 4. Second baffle; 5. Fastener; 6. Hinge; 7. First square tube column; 701. Second square tube column; 702. Third square tube column; 703. Fourth square tube column; 8. First support plate; 9. Second support plate; 10. Shock-absorbing rubber layer; 11. Vibration motor; 12. Fixing plate; 13. Anti-loosening nut. Detailed Implementation
[0018] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0019] Please see Figure 1 - Figure 3As shown, a pallet-type copper powder storage bin vibration device for easy fixing of multi-specification bins includes a base plate 1 and a copper powder storage bin 2 placed on the base plate 1. The base plate 1 has a rectangular structure, and all four corners of the base plate 1 are chamfered. A first square tube column 7, a second square tube column 701, a third square tube column 702, and a fourth square tube column 703 are provided on the base plate 1. The four square tube columns 703 form a semi-circular structure and are symmetrically arranged on the arc edge of the semi-circle. The upper parts of the first square tube column 7, the second square tube column 701, the third square tube column 702 and the fourth square tube column 703 are all vertical structures, and the lower parts are all inclined structures, tilting towards the copper powder storage tank 2. The first square tube column 7, the second square tube column 701, the third square tube column 702 and the fourth square tube column 703 are used to fix the position of the copper powder storage tank 2.
[0020] The upper part of the side away from the first square tube column 702 and the fourth square tube column 703 is respectively provided with a first baffle 3 and a second baffle 4 arranged horizontally, and both the first baffle 3 and the second baffle 4 are arc-shaped structures. The first baffle 3 and the second baffle 4 are used to lock the copper powder storage tank 2. The upper part of the side away from the first square tube column 702 and the fourth square tube column 703 is provided with a hinge 6, and the first baffle 3 and the second baffle 4 are rotatably connected to the third square tube column 702 and the fourth square tube column 703 via the hinge 6. The first baffle 3 and the second baffle 4 are provided with two buckles 5, and the first baffle 3 and the second baffle 4 are locked and connected to each other via the buckles 5.
[0021] A fixed plate 12 is provided at the center of the lower surface of the base plate 1. The fixed plate 12 has a rectangular structure and is welded to the lower surface of the base plate 1. A vibration motor 11 is bolted to the fixed plate 12. The vibration motor 11 is used to vibrate the copper powder inside the copper powder storage bin 2. First support plates 8 are welded longitudinally at both ends of the base plate 1 corresponding to the fixed plate 12. The length of the first support plates 8 is the same as the width of the base plate 1. A certain gap is left between the two first support plates 8 to facilitate the entry of a manual forklift. The first support plate 8 has a shock-absorbing rubber layer 10 on its lower surface. The second support plate 9 is provided on the lower surface of the shock-absorbing rubber layer 10. The second support plate 9 is connected to the first support plate 8 through the shock-absorbing rubber layer 10. Multiple anti-loosening nuts 13 are provided between the shock-absorbing rubber layer 10 and the first support plate 8 or the second support plate 9. The shock-absorbing rubber layer 10 is connected to the first support plate 8 or the second support plate 9 through the anti-loosening nuts 13. The anti-loosening nuts 13 are used to ensure that the vibration device will not fall off during high-frequency vibration.
[0022] To facilitate understanding of the above-mentioned technical solution of this utility model, the working principle or operation method of this utility model in actual process will be described in detail below: In practical use, the operator places the copper powder storage tank 2 containing copper powder between four square tube columns, and then uses the buckle 5 to connect and lock the first baffle 3 and the second baffle 4 to fix the copper powder storage tank 2. Then the operator starts the vibration motor 11 to vibrate and loosen the copper powder inside the copper powder storage tank 2.
[0023] This invention features a vibratory motor 11 mounted at the center of the lower surface of the base plate 1. Operators simply place the copper powder storage bin 2 onto the corresponding base plate 1 and lock the bin body using the latches 5 to initiate vibration operation. The excitation force of the vibratory motor 11 is evenly transmitted to the entire bin body through the base plate 1, effectively avoiding the cumbersome operation of repeatedly adjusting the installation position and locking mechanism for different bin diameters, as required by traditional methods. This significantly improves the equipment's adaptability to storage bins of different specifications and enhances operational efficiency.
[0024] Furthermore, this utility model provides two longitudinally arranged first support plates 8 on the lower surface of the base plate 1, with a gap between the two first support plates 8, ensuring that the manual forklift forks can be smoothly inserted and operated. This not only greatly facilitates the handling of storage bins, the centralized addition of copper powder, and the replacement of empty bins, but also effectively avoids the tipping and dust spillage problems that may be caused by traditional manual handling. While improving operational efficiency and safety, it realizes the mechanization and standardization of logistics transfer and increases practicality.
[0025] Furthermore, this utility model provides a shock-absorbing rubber layer 10 at the bottom of the first support plate 8, and connects the second support plate 9 via the shock-absorbing rubber layer 10. Multiple anti-loosening nuts 13, provided between the shock-absorbing rubber layer 10 and the first or second support plate 8, ensure the long-term stability of the connection structure under continuous vibration. The shock-absorbing rubber layer 10 utilizes the unique viscoelastic damping characteristics of rubber material to effectively absorb and dissipate the impact energy generated by the vibration motor 11 during operation. Simultaneously, the anti-loosening nuts 13, through their locking structure, effectively resist thread loosening caused by vibration, improving the stability and reliability of equipment operation and extending the service life of the device.
[0026] It should be noted that, in this document, terms such as “comprising,” “including,” or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such process, method, article, or apparatus.
[0027] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention.
Claims
1. A vibrating device for a pallet-type copper powder storage bin that facilitates fixing multiple bin sizes, comprising a base plate (1) and a copper powder storage bin (2) placed on the base plate (1), characterized in that: The base plate (1) is provided with a first square tube column (7), a second square tube column (701), a third square tube column (702) and a fourth square tube column (703); a fixing plate (12) is provided at the center of the lower surface of the base plate (1); A vibration motor (11) is bolted onto the fixed plate (12); a first baffle (3) and a second baffle (4) are respectively arranged horizontally on the upper part of the third square tube column (702) and the fourth square tube column (703) away from the first square tube column (7).
2. The vibrating device for a pallet-type copper powder storage tank that facilitates fixing multiple sizes of tanks, as described in claim 1, is characterized in that: The first square tube column (7), the second square tube column (701), the third square tube column (702) and the fourth square tube column (703) form a semi-circular structure and are symmetrically arranged on the arc edge of the semi-circle.
3. The vibrating device for a pallet-type copper powder storage tank that facilitates fixing multi-specification tanks according to claim 1, characterized in that: The upper part of the third-party tube column (702) and the fourth-party tube column (703) on the side away from the first-party tube column (7) is provided with a hinge (6); the first baffle (3) and the second baffle (4) are respectively rotatably connected to the third-party tube column (702) and the fourth-party tube column (703) via the hinge (6).
4. The vibrating device for a pallet-type copper powder storage tank that facilitates fixing multiple specifications of tanks, as described in claim 1, is characterized in that: The first baffle (3) and the second baffle (4) are provided with two buckles (5).
5. The vibration device for a pallet-type copper powder storage tank that facilitates fixing multi-specification tanks according to claim 1, characterized in that: The bottom plate (1) has longitudinally arranged first support plates (8) welded to the positions at both ends of the fixed plate (12) on its lower surface.
6. The vibration device for a pallet-type copper powder storage tank that facilitates fixing multiple sizes of tanks, as described in claim 5, is characterized in that: The first support plate (8) has a shock-absorbing rubber layer (10) on its lower surface; the second support plate (9) is provided on the lower surface of the shock-absorbing rubber layer (10), and the second support plate (9) and the first support plate (8) are connected to each other through the shock-absorbing rubber layer (10).
7. The vibrating device for a pallet-type copper powder storage tank that facilitates fixing multi-specification tanks according to claim 6, characterized in that: Multiple anti-loosening nuts (13) are provided between the shock-absorbing rubber layer (10) and the first support plate (8) or the second support plate (9).
8. The vibration device for a pallet-type copper powder storage tank that facilitates fixing multi-specification tanks according to claim 6, characterized in that: Both the first baffle (3) and the second baffle (4) are arc-shaped structures.