A kind of edible oil production processing bottle washing machine draining device
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- HARBIN PURUN GREASE
- Filing Date
- 2025-09-17
- Publication Date
- 2026-08-07
AI Technical Summary
[0002]现有风干沥水器喷嘴直对瓶内壁,在喷嘴向上移动时水渍很容易被吹到瓶子内部瓶底处,无法将瓶子内部的水渍吹干,并且为较矮的瓶子风干沥水时欧阳喷嘴离开瓶子时还有一段距离上升,上升过程中很容易将瓶子吹倒
[0004]本实用新型的有益效果为:在瓶子向上移动时可以将水渍向上吹动,可以防止喷嘴在向上移动时将水渍吹到瓶底处,并且工作人员可以根据瓶子的高度随时快速更换不同长度的接管,可以防止喷嘴与瓶子分离时瓶子被吹倒。
Smart Images

Figure CN224608114U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the technical field of edible oil bottle draining equipment, specifically relating to a bottle washing machine draining device for edible oil production and processing. Background Technology
[0002] The nozzle of the existing air-drying dehydrator is directly facing the inner wall of the bottle. When the nozzle moves upward, water stains are easily blown to the bottom of the bottle, making it impossible to dry the water stains inside the bottle. Furthermore, when air-drying shorter bottles, the nozzle still has a distance to rise after leaving the bottle, and the bottle is easily blown over during the rising process. Summary of the Invention
[0003] The purpose of this invention is to blow water upwards when the bottle moves upwards, preventing the nozzle from blowing water to the bottom of the bottle. Furthermore, it allows workers to quickly change the connecting pipe of different lengths according to the bottle's height, preventing the bottle from being blown over when the nozzle separates from it. The technical solution is as follows: A bottle washing machine draining device for edible oil production and processing, characterized in that: it includes a high-pressure nozzle 1 and a connecting pipe 2 connected to the center of the upper surface of the high-pressure nozzle 1; an inflation pipe 3 is inserted at the center of the upper surface of the connecting pipe 2; an inflation hose 4 is connected above the side surface of the inflation pipe 3; a connecting sleeve 5 is connected at the center of the upper surface of the inflation pipe 3; a locking screw 6 is inserted at the middle of the outer surface of the connecting sleeve 5; and a hydraulic cylinder 7 is inserted at the center of the upper surface of the connecting sleeve 5. The high-pressure nozzle 1 includes... The chassis 1-1 comprises a base 1-1, nozzles 1-2, a connecting pipe 1-3, and a threaded groove 1-4. Several nozzles 1-2 are evenly distributed around the sides and lower surface of the chassis 1-1. A connecting pipe 1-3 is connected to the center of the upper surface of the chassis 1-1. A threaded groove 1-4 is provided at the center of the inner surface of the upper surface of the connecting pipe 1-3. The side nozzles 1-2 are L-shaped. The interiors of the connecting pipe 1-3, the chassis 1-1, and the nozzles 1-2 are interconnected. The connecting pipe 2 includes a main pipe 2-1, anti-slip texture 2-2, and a rubber ring. 2-3 and threaded tube 2-4, the outer surface of the main pipe 2-1 has anti-slip texture 2-2 around the middle, the upper and lower surfaces of the main pipe 2-1 are connected to the edges of each of the four sides, and the upper and lower surfaces of the main pipe 2-1 are connected to the center of each of the two threads 2-4. The lower threaded tube 2-4 is inserted into the threaded groove 1-4. The interior of the main pipe 2-1 is interconnected with the interior of the connecting pipe 1-3. The threads on the threaded tube 2-4 and the threads on the threaded groove 1-4 are mutually engaged. The inflation pipe 3 includes The system includes an upper pipe 3-1, a branch pipe 3-2, a high-pressure pump 3-3, and a connector 3-4. The branch pipe 3-2 is connected to the lower outer surface of the upper pipe 3-1. The high-pressure pump 3-3 is connected to the center of the upper surface of the branch pipe 3-2. The connector 3-4 is connected to the middle of the upper surface of the high-pressure pump 3-3. An inflation hose 4 is inserted into the upper surface of the connector 3-4. The upper pipe 3-1 is inserted into the threaded pipe 2-4 above it. The lower part of the connecting sleeve 5 is connected to the center of the upper surface of the upper pipe 3-1.
[0004] The beneficial effects of this utility model are: when the bottle moves upward, it can blow the water stains upward, which can prevent the nozzle from blowing the water stains to the bottom of the bottle when it moves upward. In addition, the staff can quickly change the connecting pipe of different lengths according to the height of the bottle, which can prevent the bottle from being blown over when the nozzle is separated from the bottle. Attached Figure Description
[0005] Figure 1 This is a schematic diagram of the overall structure of this utility model; Figure 2 This is a schematic diagram of the high-pressure nozzle 1 of this utility model; Figure 3 This is a schematic diagram of the connecting pipe 2 structure of this utility model; Figure 4This is a schematic diagram of the structure of the air-filled pipe 3 of this utility model; In the diagram: 1. High-pressure nozzle; 2. Connecting pipe; 3. Inflation pipe; 4. Inflation hose; 5. Connecting sleeve; 6. Locking screw; 7. Hydraulic cylinder; 1-1. Chassis; 1-2. Nozzle; 1-3. Connecting pipe; 1-4. Threaded groove; 2-1. Main pipe; 2-2. Anti-slip texture; 2-3. Rubber ring; 2-4. Threaded pipe; 3-1. Upper pipe; 3-2. Branch pipe; 3-3. High-pressure pump; 3-4. Connector. Detailed Implementation
[0006] Reference Figures 1-4 The draining device for a bottle washing machine used in edible oil production and processing is characterized by comprising a high-pressure nozzle 1 and a connecting pipe 2 connected to the center of the upper surface of the high-pressure nozzle 1. An inflation pipe 3 is inserted into the center of the upper surface of the connecting pipe 2. An inflation hose 4 is connected above the side surface of the inflation pipe 3. A connecting sleeve 5 is connected to the center of the upper surface of the inflation pipe 3. A locking screw 6 is inserted into the middle of the outer surface of the connecting sleeve 5. A hydraulic cylinder 7 is inserted into the center of the upper surface of the connecting sleeve 5.
[0007] In use, first insert the telescopic end of the hydraulic cylinder 7 into the connecting sleeve 5, then turn the locking screw 6 to fix the telescopic end of the hydraulic cylinder 7 to the connecting sleeve 5. Then, insert one end of the inflation hose 4 into the inflation pipe 3 and the other end into the air pump. Then, tighten the connecting pipe 2 of appropriate length onto the lower surface of the inflation pipe 3. Then, tighten the high-pressure nozzle 1 onto the lower surface of the connecting pipe 2. When draining water, start the hydraulic cylinder 7 to extend the telescopic end and simultaneously move the high-pressure nozzle 1 downward through the inflation pipe 3 and the connecting pipe 2. At the same time, insert the high-pressure nozzle 1 into the cooking oil bottle. Then, when the high-pressure nozzle 1 is inserted into the bottom of the bottle, start the air pump to inject gas into the inflation pipe 3 and pressurize it into the connecting pipe 2, and spray it out through the high-pressure nozzle 1. Finally, while spraying out the high-pressure airflow, retract the telescopic end of the hydraulic cylinder 7 and move the high-pressure nozzle 1 upward to dry the water inside the bottle.
[0008] Furthermore, the high-pressure nozzle 1 includes a chassis 1-1, a nozzle 1-2, a connecting pipe 1-3, and a threaded groove 1-4. Several nozzles 1-2 are evenly distributed around the sides and the lower surface of the chassis 1-1. A connecting pipe 1-3 is connected to the center of the upper surface of the chassis 1-1. A threaded groove 1-4 is provided at the center of the inner surface of the upper surface of the connecting pipe 1-3. The nozzles 1-2 on the side are L-shaped. The interiors of the connecting pipe 1-3, the chassis 1-1, and the nozzles 1-2 are interconnected.
[0009] When in use, first tighten the connector 1-3 onto the lower surface of the connecting pipe 2, and at the same time insert the connecting pipe 2 into the threaded groove 1-4. Then, the generated high-pressure gas is injected into the chassis 1-1 through the connector 1-3, and finally sprayed out through the nozzle 1-2 to air dry and drain.
[0010] When high-pressure gas is ejected from the lower nozzle 1-2, the gas blows upward along the bottle body as it hits the bottom of the bottle, simultaneously causing the water droplets to move upward. Meanwhile, the side nozzle 1-2, due to its upward L-shaped shape, blows high-pressure gas upward, thus quickly blowing the water droplets out of the bottle.
[0011] Furthermore, the connecting pipe 2 includes a main pipe 2-1, anti-slip texture 2-2, rubber ring 2-3, and threaded pipe 2-4. The outer surface of the main pipe 2-1 is provided with anti-slip texture 2-2 around the middle. Rubber rings 2-3 are connected to the edges of the upper and lower surfaces of the main pipe 2-1. Threaded pipes 2-4 are connected to the centers of the upper and lower surfaces of the main pipe 2-1. The lower threaded pipe 2-4 is inserted into the threaded groove 1-4. The interior of the main pipe 2-1 is interconnected with the interior of the connecting pipe 1-3. The threads on the threaded pipe 2-4 are engaged with the threads on the threaded groove 1-4.
[0012] When in use, first tighten the lower threaded tube 2-4 into the threaded groove 1-4, then tighten the upper threaded tube 2-4 onto the lower surface of the inflation pipe 3. When rotating the main tube 2-1, the anti-slip texture 2-2 increases the friction and prevents slippage. Finally, the high-pressure gas is injected into the connecting pipe 1-3 through the main tube 2-1 and can be sprayed out from the nozzle 1-2.
[0013] Furthermore, the inflation pipe 3 includes an upper pipe 3-1, a branch pipe 3-2, a high-pressure pump 3-3, and a connector 3-4. The branch pipe 3-2 is connected to the lower outer surface of the upper pipe 3-1. The high-pressure pump 3-3 is connected to the center of the upper surface of the branch pipe 3-2. The connector 3-4 is connected to the middle of the upper surface of the high-pressure pump 3-3. An inflation hose 4 is inserted into the upper surface of the connector 3-4. The upper pipe 3-1 is inserted into the threaded pipe 2-4 above it. The lower part of the connecting sleeve 5 is connected to the center of the upper surface of the upper pipe 3-1.
[0014] When in use, first insert one end of the air hose 4 into the connector 3-4 and connect the other end to the air pump. Then, the gas produced by the air pump is converted into high-pressure gas by the high-pressure pump 3-3. The high-pressure gas is then injected into the upper pipe 3-1 through the branch pipe 3-2. Finally, the high-pressure gas is injected into the main pipe 2-1 through the upper pipe 3-1.
[0015] Of course, the above description is not intended to limit the present utility model, and the present utility model is not limited to the examples given above. Any changes, modifications, additions or substitutions made by those skilled in the art within the scope of the present utility model should also fall within the protection scope of the present utility model.
Claims
1. A bottle washing machine draining device for edible oil production and processing, characterized in that: It includes a high-pressure nozzle (1) and a connecting pipe (2) connected to the center of the upper surface of the high-pressure nozzle (1). An inflation pipe (3) is inserted at the center of the upper surface of the connecting pipe (2). An inflation hose (4) is connected above the side surface of the inflation pipe (3). A connecting sleeve (5) is connected at the center of the upper surface of the inflation pipe (3). A locking screw (6) is inserted at the middle of the outer surface of the connecting sleeve (5). A hydraulic cylinder (7) is inserted at the center of the upper surface of the connecting sleeve (5).
2. The dewatering device for a bottle washing machine in edible oil production and processing according to claim 1, characterized in that: The high-pressure nozzle (1) includes a chassis (1-1), a nozzle (1-2), a connecting pipe (1-3), and a threaded groove (1-4). Several nozzles (1-2) are evenly distributed around the sides and the lower surface of the chassis (1-1). A connecting pipe (1-3) is connected to the center of the upper surface of the chassis (1-1). A threaded groove (1-4) is provided at the center of the inner surface of the upper surface of the connecting pipe (1-3). The nozzles (1-2) on the side are L-shaped. The interior of the connecting pipe (1-3), the interior of the chassis (1-1), and the interior of the nozzles (1-2) are interconnected.
3. The dewatering device for a bottle washing machine in edible oil production and processing according to claim 2, characterized in that: The connecting pipe (2) includes a main pipe (2-1), anti-slip texture (2-2), rubber ring (2-3), and threaded pipe (2-4). Anti-slip texture (2-2) is provided around the middle of the outer surface of the main pipe (2-1). Rubber ring (2-3) is connected to the edges of the upper and lower surfaces of the main pipe (2-1). Threaded pipe (2-4) is connected to the center of the upper and lower surfaces of the main pipe (2-1). The threaded pipe (2-4) is inserted into the threaded groove (1-4). The interior of the main pipe (2-1) is connected to the interior of the connecting pipe (1-3). The threads on the threaded pipe (2-4) are engaged with the threads on the threaded groove (1-4).
4. The dewatering device for a bottle washing machine in edible oil production and processing according to claim 3, characterized in that: The inflation pipe (3) includes an upper pipe (3-1), a branch pipe (3-2), a high-pressure pump (3-3), and a connector (3-4). The branch pipe (3-2) is connected to the lower outer surface of the upper pipe (3-1). The high-pressure pump (3-3) is connected to the center of the upper surface of the branch pipe (3-2). The connector (3-4) is connected to the middle of the upper surface of the high-pressure pump (3-3). An inflation hose (4) is inserted into the upper surface of the connector (3-4). The upper pipe (3-1) is inserted into the upper threaded pipe (2-4). The lower part of the connecting sleeve (5) is connected to the center of the upper surface of the upper pipe (3-1).