A tower type laminar flow device for a blasting bead dispensing apparatus

CN224822441UActive Publication Date: 2026-10-09WUHAN YELLOW CRANE TOWER NEW MATERIAL TECH DEV
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Patent Information

Application Number
CN202522398635.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-11-12
Publication Date
2026-10-09
Estimated Expiration
2035-11-12

AI Technical Summary

Technical Problem

[0002]目前爆珠滴制设备的成型装置是在成型外筒侧面底端开设进油口,由于循环油是通过一侧横向进入外筒内,导致循环油进入外筒后,外筒底端两侧的循环油流速不一致,外筒内循环油波动较大,从而导致循环油流入内筒时,内筒顶部周围流速不稳定

Benefits of technology

本实用新型中,油液通过注液口从外筒的底端进入外筒,油液依次经过第一均流板、第二均流板、第三均流板,在均流孔的作用下使得外筒内油液缓慢平稳上升,外筒油液波动整体平稳,内筒顶部周围油液流速稳定,保证了爆珠在滴制过程中从滴头出口处能稳定分离,通过流量传感器实时监控内筒内油液流速稳定性,防溢流管用于收集从外筒溢出的油液,并通过排液口排出回收。

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Abstract

The utility model discloses a tower type tranquilizer for the equipment of explosive bead drop, including fixed plate, the fixed plate is passed in and has the inner tube, the inner tube is from below and upwards and is sequentially sleeved with first flow -equalizing plate, second flow -equalizing plate, third flow -equalizing plate, first flow -equalizing plate, second flow -equalizing plate, third flow -equalizing plate are provided with the flow -equalizing hole of uniform distribution, the top of fixed plate is fixed with the outer tube and anti -overflow pipe, the fixed plate is passed in and has with anti -overflow pipe intercommunication's liquid discharge port, the fixed plate is passed in and has with the liquid injection port of outer tube intercommunication. The utility model oil liquid is sequentially passed first flow -equalizing plate, second flow -equalizing plate, third flow -equalizing plate, makes the oil liquid in the outer tube slow and steady rise under the action of flow -equalizing hole, and the oil liquid fluctuation of outer tube is whole steady, and the oil liquid flow rate of inner tube top around is stable, guarantees the explosive bead in the drop process from the outlet of drip head can steady separation, and the oil liquid flow rate stability in the inner tube is monitored in real time through flow sensor.
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Description

Technical Field

[0001] This utility model relates to the field of popping bead drop making equipment, and in particular to a tower-type stabilizing device for popping bead drop making equipment. Background Technology

[0002] Currently, the forming device of the bursting bead dripping equipment has an oil inlet at the bottom side of the outer forming cylinder. Because the circulating oil enters the outer cylinder laterally from one side, the flow rate of the circulating oil on both sides of the bottom of the outer cylinder is inconsistent, resulting in significant fluctuations in the circulating oil within the outer cylinder. This leads to unstable flow velocity around the top of the inner cylinder when the circulating oil flows in. The dripper outlet is located at the top of the inner cylinder. Due to the significant flow velocity fluctuations around the top of the inner cylinder, the wet pellets are unstable during the dripping process at the dripper outlet, preventing them from steadily separating and dripping into the inner cylinder. Utility Model Content

[0003] The purpose of this invention is to address the shortcomings of existing technologies by proposing a tower-type stabilizing device for making popping beads.

[0004] To achieve the above objectives, the present invention adopts the following technical solution: A tower-type flow stabilization device for a popping bead dripping equipment includes a fixed plate with an inner cylinder extending through it. A first flow equalization plate, a second flow equalization plate, and a third flow equalization plate are sequentially sleeved on the inner cylinder from bottom to top. The first, second, and third flow equalization plates are provided with uniformly distributed flow equalization holes. An outer cylinder and an overflow prevention pipe are fixed to the top of the fixed plate. The fixed plate has a drain port connected to the overflow prevention pipe and an injection port connected to the outer cylinder.

[0005] Preferably, a connecting seat is fixed to the bottom of the fixing plate, a protective tube is sleeved on the connecting seat, and the inner cylinder passes through the connecting seat.

[0006] Preferably, the connecting seat and the protective tube are connected by threads.

[0007] Preferably, a flow sensor is installed at the bottom of the inner cylinder, and the flow sensor is located inside the protective tube.

[0008] Preferably, a fixing column is fixed on the fixing plate, and the fixing column passes through the first flow equalization plate, the second flow equalization plate, and the third flow equalization plate.

[0009] Preferably, a nut is threaded onto the fixed column, and the first flow equalization plate, the second flow equalization plate, and the third flow equalization plate are all fixed to the fixed column by the nut.

[0010] Preferably, the first flow equalization plate, the second flow equalization plate, and the third flow equalization plate are all slidably sleeved inside the outer cylinder, and the outer cylinder is located inside the overflow prevention pipe.

[0011] Preferably, the top end of the inner cylinder is located below the top end of the outer cylinder.

[0012] Compared with the prior art, the beneficial effects of this utility model are: In this invention, the oil enters the outer cylinder from the bottom through the injection port. The oil passes through the first flow equalization plate, the second flow equalization plate, and the third flow equalization plate in sequence. Under the action of the flow equalization holes, the oil in the outer cylinder rises slowly and steadily, and the overall fluctuation of the oil in the outer cylinder is stable. The oil flow rate around the top of the inner cylinder is stable, ensuring that the bursting beads can be stably separated from the dripping head outlet during the dripping process. The stability of the oil flow rate in the inner cylinder is monitored in real time by a flow sensor. The overflow prevention pipe is used to collect the oil overflowing from the outer cylinder and discharge it through the drain port for recycling. Attached Figure Description

[0013] Figure 1 This is a cross-sectional view of a tower-type stabilizing device for a popping bead dripping equipment proposed in this utility model; Figure 2 This is a top view of the fixing plate of a tower-type stabilizing device for a popping bead dripping equipment proposed in this utility model; Figure 3 This is a top view of the first flow equalization plate of a tower-type flow stabilization device for a popping bead dripping equipment proposed in this utility model; Figure 4 This is a top view of the second flow equalization plate of a tower-type flow equalization device for a popping bead dripping equipment proposed in this utility model; Figure 5 This is a top view of the third flow equalization plate of a tower-type flow equalization device for a popping bead dripping equipment proposed in this utility model.

[0014] In the diagram: 1. Fixing plate, 2. Connecting seat, 3. Protective tube, 4. Inner cylinder, 5. Flow sensor, 6. Injection port, 7. Drain port, 8. Anti-overflow pipe, 9. First flow equalization plate, 10. Second flow equalization plate, 11. Outer cylinder, 12. Third flow equalization plate, 13. Fixing column. Detailed Implementation

[0015] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments.

[0016] Reference Figure 1-5A tower-type stabilizing device for a popping bead dripping equipment includes a fixed plate 1, an inner cylinder 4 extending through the fixed plate 1, and a first flow equalizing plate 9, a second flow equalizing plate 10, and a third flow equalizing plate 12 sequentially sleeved on the inner cylinder 4 from bottom to top. The first flow equalizing plate 9, the second flow equalizing plate 10, and the third flow equalizing plate 12 are provided with uniformly distributed flow equalizing holes. An outer cylinder 11 and an overflow prevention pipe 8 are fixed to the top of the fixed plate 1, and a drain port communicating with the overflow prevention pipe 8 extends through the fixed plate 1. 7. The fixing plate 1 has a liquid injection port 6 that communicates with the outer cylinder 11. The oil enters the outer cylinder 11 from the bottom through the liquid injection port 6. The oil passes through the first flow equalization plate 9, the second flow equalization plate 10, and the third flow equalization plate 12 in sequence. Under the action of the flow equalization holes, the oil in the outer cylinder 11 rises slowly and steadily, and the oil fluctuation in the outer cylinder 11 is generally stable. The oil flow velocity around the top of the inner cylinder 4 is stable, ensuring that the bursting beads can be stably separated from the dripper outlet during the dripping process. The flow sensor 5 monitors the stability of the oil flow rate in the inner cylinder 4 in real time. A connecting seat 2 is fixed to the bottom of the fixing plate 1, and a protective tube 3 is sleeved on the connecting seat 2. The inner cylinder 4 passes through the connecting seat 2, and the connecting seat 2 and the protective tube 3 are connected by threads. The flow sensor 5 is installed at the bottom of the inner cylinder 4 and is located inside the protective tube 3. A fixing column 13 is fixed on the fixing plate 1. The fixing column 13 passes through the first flow equalization plate 9, the second flow equalization plate 10, and the third flow equalization plate 12. A nut is threaded onto the fixing column 13. The first flow equalization plate 9, the second flow equalization plate 10, and the third flow equalization plate 12 are all fixed to the fixing column 13 by nuts. The first flow equalization plate 9, the second flow equalization plate 10, and the third flow equalization plate 12 are all slidably sleeved in the outer cylinder 11. The outer cylinder 11 is located in the overflow prevention pipe 8. The top of the inner cylinder 4 is located below the top of the outer cylinder 11. The overflow prevention pipe 8 is used to collect the oil overflowing from the outer cylinder 11 and discharge it for recycling through the drain port 7.

[0017] Working principle: During use, the oil enters the outer cylinder 11 from the bottom through the injection port 6. The oil passes through the first flow equalization plate 9, the second flow equalization plate 10, and the third flow equalization plate 12 in sequence. Under the action of the flow equalization holes, the oil in the outer cylinder 11 rises slowly and steadily, and the oil fluctuation in the outer cylinder 11 is generally stable. The oil flow rate around the top of the inner cylinder 4 is stable, which ensures that the bursting beads can be stably separated from the dripping head outlet during the dripping process. The flow sensor 5 monitors the stability of the oil flow rate in the inner cylinder 4 in real time. The overflow prevention pipe 8 is used to collect the oil overflowing from the outer cylinder 11 and discharge it for recycling through the drain port 7.

[0018] The above description is only a preferred embodiment of the present utility model, but the protection scope of the present utility model is not limited thereto. Any equivalent substitutions or changes made by those skilled in the art within the technical scope disclosed in the present utility model, based on the technical solution and the inventive concept of the present utility model, should be included within the protection scope of the present utility model.

Claims

1. A tower-type stabilizing device for a popping bead dripping equipment, comprising a fixing plate (1), characterized in that, The fixed plate (1) has an inner cylinder (4) through it. The inner cylinder (4) is fitted with a first flow equalization plate (9), a second flow equalization plate (10), and a third flow equalization plate (12) from bottom to top. The first flow equalization plate (9), the second flow equalization plate (10), and the third flow equalization plate (12) are provided with evenly distributed flow equalization holes. The top of the fixed plate (1) is fixed with an outer cylinder (11) and an overflow prevention pipe (8). The fixed plate (1) has a drain port (7) that is connected to the overflow prevention pipe (8) through it. The fixed plate (1) has an injection port (6) that is connected to the outer cylinder (11) through it.

2. A tower-type stabilizing device for a popping bead dripping equipment according to claim 1, characterized in that, The bottom of the fixing plate (1) is fixed with a connecting seat (2), and a protective tube (3) is sleeved on the connecting seat (2). The inner cylinder (4) passes through the connecting seat (2).

3. A tower-type stabilizing device for a popping bead dripping equipment according to claim 2, characterized in that, The connecting seat (2) and the protective tube (3) are connected by threads.

4. A tower-type stabilizing device for a popping bead dripping equipment according to claim 2, characterized in that, A flow sensor (5) is installed at the bottom of the inner cylinder (4), and the flow sensor (5) is located inside the protective tube (3).

5. A tower-type stabilizing device for a popping bead dripping equipment according to claim 1, characterized in that, A fixing column (13) is fixed on the fixing plate (1), and the fixing column (13) passes through the first flow equalization plate (9), the second flow equalization plate (10), and the third flow equalization plate (12).

6. A tower-type stabilizing device for a popping bead dripping equipment according to claim 5, characterized in that, The fixed column (13) is threaded with a nut, and the first flow equalization plate (9), the second flow equalization plate (10), and the third flow equalization plate (12) are all fixed to the fixed column (13) by the nut.

7. A tower-type stabilizing device for a popping bead dripping equipment according to claim 1, characterized in that, The first flow equalization plate (9), the second flow equalization plate (10), and the third flow equalization plate (12) are all slidably sleeved inside the outer cylinder (11), which is located inside the overflow prevention pipe (8).

8. A tower-type stabilizing device for a popping bead dripping equipment according to claim 1, characterized in that, The top of the inner cylinder (4) is located below the top of the outer cylinder (11).