Conical cover structure with holes in bin for eliminating particle nonuniformity of finished welding flux bin
By using a perforated conical cap structure, the flux particles are worn down to a standard size by a motor-driven gear rotation, which solves the problem of uneven flux particle size, improves the fluxing effect, and enables the recycling of debris.
Patent Information
- Application Number
- CN202423132623.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-18
- Publication Date
- 2025-12-16
- Estimated Expiration
- 2034-12-18
AI Technical Summary
The finished flux particles are prone to unevenness during storage, which affects the fluxing effect. Existing storage equipment cannot effectively eliminate this problem.
It adopts a perforated conical cover structure, which is used in conjunction with a rotatable first conical cover plate and a second conical cover plate. The motor drives the gear to rotate the toothed ring, which wears the uneven flux particles to the standard size and separates the debris through the filter screen.
It effectively eliminates the unevenness of flux particles, improves the fluxing effect, and enables the recycling of debris, thus avoiding waste.
Smart Images

Figure CN223673398U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the field of flux production technology, specifically to a bin hole conical cover structure for eliminating unevenness of flux finished product bin particles. BACKGROUND
[0002] Flux, very extensive definition, including molten salt, organic matter, active gas, metal vapor, etc. that is, in addition to the base material and filler, refers to all substances used to reduce the interfacial tension of the base material and filler. After production, the flux needs to be stored in the finished product bin, and then transported after subsequent packaging.
[0003] After production, some particles on the surface of the flux particles may have protrusions, resulting in uneven size of the flux finished product particles. Most existing finished product bins only have the effect of storing materials and cannot eliminate the unevenness of the flux finished product particles, which will affect the fluxing effect of the flux. UTILITY MODEL CONTENT
[0004] The utility model aims at providing a bin hole conical cover structure for eliminating unevenness of flux finished product bin particles to solve the problems in the above background technology.
[0005] To achieve the above-mentioned purpose, the utility model provides the following technical scheme: a bin hole conical cover structure for eliminating unevenness of flux finished product bin particles, comprising a bin body, an internal material receiving hopper is arranged in the bin body, the top outer surface of the material receiving hopper is matched with the inside of the bin body, a first conical cover plate is arranged at the bottom end of the material receiving hopper, a tooth ring is arranged at the top edge of the outer surface of the first conical cover plate, a positioning shell is arranged at the position away from the first conical cover plate on the outer surface of the tooth ring, a notch is arranged on one side of the positioning shell, a gear is engagedly connected to the notch on one side of the tooth ring, a second conical cover plate is arranged at the bottom of the positioning shell, a filter screen is arranged in the inside of the bin body below the second conical cover plate, the filter screen is in an inclined state, and a discharge port is arranged on one side of the bin body at the downward inclined end of the filter screen.
[0006] Preferably, a fixing support is arranged at the bottom of the outer surface of the bin body, and a debris discharge port is arranged at the bottom of the bin body. When the first conical cover plate and the second conical cover plate wear the flux finished product particles to a uniform state through the hole, the generated debris can be discharged through the debris discharge port.
[0007] Preferably, a plurality of supporting rods are equidistantly arranged at the bottom of the external positioning shell of the second conical cover plate, the supporting rods stably support the positioning shell, and the first conical cover plate and the second conical cover plate can be supported at the required position.
[0008] Preferably, the bottom ends of the plurality of support rods are connected with a fixed ring, the outer surface of the fixed ring is fixedly installed in the interior of the bin body, and the fixed ring supports the positioning shell through the support rods to ensure the stability of the structure.
[0009] Preferably, the bottom end of the gear is provided with a motor, the bottom end of the motor is provided with a support plate, the support plate is fixedly installed on the outer surfaces of the two support rods at both ends, and the support plate fixes the motor; when the motor is started, the motor drives the gear to rotate, the rotation of the gear drives the gear ring to rotate, and the first conical cover plate rotates.
[0010] Preferably, the lower parts of the first conical cover plate and the second conical cover plate are provided with a plurality of holes, the holes provided in the lower part of the first conical cover plate are matched with the holes provided in the lower part of the second conical cover plate, the holes provided in the lower part of the first conical cover plate are larger than the holes provided in the lower part of the second conical cover plate, when the first conical cover plate is driven to rotate, the solder product particles pass through the holes provided in the lower part of the first conical cover plate and enter the second conical cover plate, the holes provided in the lower part of the second conical cover plate are of a standard particle size, the solder product particles with uniform outer surfaces pass through the holes provided in the lower part of the second conical cover plate, the solder product particles with non-uniform outer surfaces are blocked by the second conical cover plate, are driven to rotate by the first conical cover plate, are abraded on the outer surfaces, and after the particle size of the solder product particles becomes a standard particle size, the solder product particles pass through the second conical cover plate and are stored in the lower part of the bin body.
[0011] Compared with the prior art, the present application has the following beneficial effects:
[0012] 1. The bin with hole conical cover structure for eliminating the non-uniformity of solder product particles in the bin, when the non-uniformity of solder product particles in the bin is eliminated, the first conical cover plate and the second conical cover plate are matched and used, the motor is started to drive the gear, the rotation of the gear drives the gear ring to rotate and drives the first conical cover plate to rotate, the lower part of the positioning shell is provided with the second conical cover plate, when the first conical cover plate is driven to rotate, the solder product particles pass through the holes provided in the lower part of the first conical cover plate and enter the second conical cover plate, the holes provided in the lower part of the second conical cover plate are of a standard particle size, the solder product particles with uniform outer surfaces pass through the holes provided in the lower part of the second conical cover plate, the solder product particles with non-uniform outer surfaces are blocked by the second conical cover plate, are driven to rotate by the first conical cover plate, are abraded on the outer surfaces, and after the particle size of the solder product particles becomes a standard particle size, the solder product particles pass through the second conical cover plate and are stored in the lower part of the bin body, the solder product particles are abraded on the outer surfaces, the solder product particles with non-uniform outer surfaces are abraded to a standard size, and the soldering effect of the solder product particles is improved.
[0013] 2, the warehouse in the structure of the hole conical cover of eliminating the unevenness of the finished product warehouse particles, the finished product particles after polishing are blocked by the filter screen, when the finished product particles need to be taken out, the valve can be opened to discharge the finished product particles, and the debris of the outer surface wear of the finished product particles can be separated from the finished product particles by the filter screen, and the separated debris can be recycled to avoid waste. BRIEF DESCRIPTION OF DRAWINGS
[0014] Figure 1 It is a whole structure schematic view of the utility model;
[0015] Figure 2 It is a warehouse body structure section schematic view of the utility model;
[0016] Figure 3 It is a first conical cover plate and second conical cover plate structure schematic view of the utility model;
[0017] Figure 4 It is a Figure 3 It is a structure enlarged schematic view of A in the middle.
[0018] In the drawing: 1, warehouse body; 2, fixed support; 3, debris discharge port; 4, blanking port; 5, material receiving hopper; 6, positioning shell; 7, support rod; 8, fixed ring; 9, filter screen; 10, support plate; 11, second conical cover plate; 12, first conical cover plate; 13, motor; 14, gear; 15, gear ring. DETAILED DESCRIPTION
[0019] The technical scheme in the embodiments of the utility model will be clearly and completely described in combination with the drawings in the embodiments of the utility model, and obviously, the described embodiments are only part of the embodiments of the utility model, not all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by the ordinary skill in the art without creative labor belong to the scope of protection of the utility model.
[0020] In the description of the utility model, it needs to be explained that the orientation or position relationship indicated by the terms "upper", "lower", "inner", "outer", "front end", "rear end", "two ends", "one end", "the other end" and the like is the orientation or position relationship shown in the drawing, and is only for the convenience of describing the utility model and simplifying the description, and cannot be understood as indicating or implying that the indicated device or element must have a particular orientation, a particular orientation and operation, therefore, it cannot be understood as a limitation on the utility model. In addition, the terms "first", "second" are only for the purpose of description, and cannot be understood as indicating or implying relative importance.
[0021] As Figures 1 to 4As shown, the embodiment eliminates the unevenness of the solder product bin particles in the bin with a hole conical cover structure, including a bin body 1, the inside of the bin body 1 is provided with a material receiving hopper 5, the top outer surface of the material receiving hopper 5 matches the inside of the bin body 1, the solder product particles are stored in the inside of the material receiving hopper 5 on the top of the bin body 1, the bottom end of the material receiving hopper 5 is provided with a first conical cover plate 12, the outer surface of the first conical cover plate 12 is provided with a tooth ring 15 at the top edge, the outer surface of the tooth ring 15 is provided with a positioning shell 6 away from the position of the first conical cover plate 12, one side of the positioning shell 6 is provided with a notch, the tooth ring 15 is engaged and connected with a gear 14 at the notch position on one side, when the gear 14 is driven, the gear 14 rotates to drive the tooth ring 15 to rotate, and drive the first conical cover plate 12 to rotate, the bottom of the positioning shell 6 is provided with a second conical cover plate 11, when the first conical cover plate 12 is driven to rotate, the solder product particles will pass through the holes provided at the lower part of the first conical cover plate 12 to enter the second conical cover plate 11, the holes provided at the lower part of the second conical cover plate 11 are standard particle size, the outer surface of the uniform solder product particles will pass through the holes provided at the lower part of the second conical cover plate 11, while the outer surface of the uneven solder product particles will be blocked by the second conical cover plate 11, and will be driven to rotate by the first conical cover plate 12, and will be abraded until the particle size is standard particle size, and then the particles will pass through the second conical cover plate 11 to enter the lower part of the bin body 1 for storage, the inside of the bin body 1 below the second conical cover plate 11 is provided with a filter screen 9, and the filter screen 9 is in an inclined state, one side of the bin body 1 at the downward inclined end of the filter screen 9 is provided with a discharge port 4, the inside of the discharge port 4 is provided with a valve, the standard size solder product particles are blocked by the filter screen 9, when the solder product particles need to be taken out, the valve is opened to discharge the solder product particles, and the debris abraded from the outer surface of the solder product particles will be filtered by the filter screen 9 and separated from the solder product particles.
[0022] Specifically, the outer surface of the bin body 1 is provided with a fixed support 2 at the bottom, the bottom of the bin body 1 is provided with a debris discharge port 3, when the first conical cover plate 12 and the second conical cover plate 11 abrade the solder product particles to a uniform state through the holes, the generated debris will be discharged through the debris discharge port 3.
[0023] Further, the bottom of the positioning shell 6 outside the second conical cover plate 11 is equidistantly provided with a plurality of supporting rods 7, the supporting rods 7 support the positioning shell 6 stably, so that the first conical cover plate 12 and the second conical cover plate 11 can be supported at the required position.
[0024] Further, the bottom ends of the plurality of supporting rods 7 are commonly connected with a fixed ring 8, the outer surface of the fixed ring 8 is fixedly installed in the inside of the bin body 1, the fixed ring 8 supports the positioning shell 6 through the supporting rods 7, and guarantees the stability of the structure.
[0025] Further, the bottom end of the gear 14 is provided with the motor 13, the bottom end of the motor 13 is provided with the support plate 10, the support plate 10 is fixedly installed on the outer surface of the corresponding two support rods 7 at both ends, the support plate 10 fixes the motor 13, the motor 13 drives the gear 14 to rotate when starting, the gear 14 rotates to drive the gear ring 15 to rotate, and the first conical cover plate 12 rotates.
[0026] Further, the lower part of the first conical cover plate 12 and the second conical cover plate 11 is provided with a plurality of holes, and the holes provided in the lower part of the first conical cover plate 12 are matched with the holes provided in the lower part of the second conical cover plate 11, the holes provided in the lower part of the first conical cover plate 12 are larger than the holes provided in the lower part of the second conical cover plate 11, the solder finished product particles will pass through the holes provided in the lower part of the first conical cover plate 12 into the second conical cover plate 11 when the first conical cover plate 12 is driven to rotate, the holes provided in the lower part of the second conical cover plate 11 are standard particle size, the solder finished product particles with uniform outer surface will pass through the holes provided in the lower part of the second conical cover plate 11, and the solder finished product particles with non-uniform outer surface will be blocked by the second conical cover plate 11, be driven to rotate by the first conical cover plate 12, and be abraded until the particle size is standard particle size, and then the particles will pass through the second conical cover plate 11 into the lower part of the warehouse body 1 for storage.
[0027] The use method of the embodiment is that when the solder finished product particles are stored, the solder finished product particles are poured into the material receiving hopper 5 inside at the top of the warehouse body 1, the solder finished product particles are placed on the top end of the first conical cover plate 12, when the non-uniformity of the solder finished product particles is eliminated, the motor 13 is started to drive the gear 14, the gear 14 rotates to drive the gear ring 15 to rotate, and the first conical cover plate 12 rotates, the bottom of the positioning shell 6 is provided with the second conical cover plate 11, the solder finished product particles will pass through the holes provided in the lower part of the first conical cover plate 12 into the second conical cover plate 11 when the first conical cover plate 12 is driven to rotate, the holes provided in the lower part of the second conical cover plate 11 are standard particle size, the solder finished product particles with uniform outer surface will pass through the holes provided in the lower part of the second conical cover plate 11, and the solder finished product particles with non-uniform outer surface will be blocked by the second conical cover plate 11, be driven to rotate by the first conical cover plate 12, and be abraded until the particle size is standard particle size, and then the particles will pass through the second conical cover plate 11 into the lower part of the warehouse body 1 for storage, the standard size solder finished product particles are blocked by the filter screen 9, when the solder finished product particles need to be taken out, the valve is opened to discharge the solder finished product particles, and the debris abraded from the outer surface of the solder finished product particles is filtered by the filter screen 9 and separated from the solder finished product particles, and the separated debris can be recycled and remolded.
[0028] Finally, it should be noted that: the above only for the preferred embodiments of the present application, and is not intended to limit the present application, although the foregoing embodiments of the present application has been described in detail, for the skilled in the art, it still can be modified, or for the equivalent replacement of part of the technical features of the technical solutions recorded in the foregoing embodiments. Any modification, equivalent replacement, improvement, etc. made within the spirit and principles of the present application, shall be included within the scope of the present application.
Claims
1. A kind of in-bunker hole conical cover structure for eliminating the unevenness of solder finished product bunker particles, comprising bunker body (1), characterized by: The inside of the bin body (1) is provided with a material receiving hopper (5), the top outer surface of the material receiving hopper (5) is matched with the inside of the bin body (1), the bottom end of the material receiving hopper (5) is provided with a first conical cover plate (12), the outer surface of the top edge of the first conical cover plate (12) is provided with a tooth ring (15), the outer surface of the tooth ring (15) is provided with a positioning shell (6) away from the position of the first conical cover plate (12), one side of the positioning shell (6) is provided with a notch, the side of the tooth ring (15) is engagedly connected with a gear (14) at the position of the notch, the bottom of the positioning shell (6) is provided with a second conical cover plate (11), the inside of the bin body (1) below the second conical cover plate (11) is provided with a filter screen (9), and the filter screen (9) is in an inclined state, the side of the bin body (1) at the downward inclined end of the filter screen (9) is provided with a discharge port (4).
2. The in-bin perforated cone cover structure to eliminate the non-uniformity of the flux finished product bin particles according to claim 1, characterized in that: The outer surface of the bottom of the bin body (1) is provided with a fixed support (2), and the bottom of the bin body (1) is provided with a debris discharge port (3).
3. The in-bin perforated cone cover structure to eliminate the non-uniformity of the flux finished product bin particles according to claim 1, characterized in that: The bottom of the outer positioning shell (6) of the second conical cover plate (11) is equidistantly provided with a plurality of supporting rods (7).
4. The in-bin perforated cone cover structure to eliminate the non-uniformity of the flux finished product bin particles according to claim 3, characterized in that: The bottom ends of the plurality of supporting rods (7) are commonly connected with a fixed ring (8), and the outer surface of the fixed ring (8) is fixedly installed in the inside of the bin body (1).
5. The in-bin perforated cone cover structure to eliminate the non-uniformity of the flux finished product bin particles according to claim 1, characterized in that: The bottom end of the gear (14) is provided with a motor (13), the bottom end of the motor (13) is provided with a supporting plate (10), and the both ends of the supporting plate (10) are fixedly installed on the outer surfaces of the corresponding two supporting rods (7).
6. The in-bin perforated cone cover structure to eliminate the non-uniformity of the flux finished product bin particles according to claim 1, characterized in that: The lower parts of the first conical cover plate (12) and the second conical cover plate (11) are both provided with a plurality of holes, and the holes provided in the lower part of the first conical cover plate (12) are used in cooperation with the holes provided in the lower part of the second conical cover plate (11).