Device for realizing automatic oil-particle separation and dynamic weighing
By designing a device with a transparent separation box and porous baffles, automatic separation and dynamic weighing of oil and particles were achieved, solving the problem that existing technologies could not observe particle changes during seepage, and enabling real-time monitoring and data recording of the seepage process.
Patent Information
- Application Number
- CN202520118552.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-19
- Publication Date
- 2026-02-27
- Estimated Expiration
- 2035-01-19
AI Technical Summary
Existing technologies cannot observe the dynamic changes of particles in real time during the separation of transparent soil material and oil solution, and can only obtain the total weight of particles after seepage ends, and cannot fully record the loss of particles during seepage.
Design a device that includes a feeding device, a separation box, an electronic balance, and a collection device. The device utilizes a transparent separation box and a porous partition to achieve automatic separation of oil and particles, and dynamically records the changes in particle weight through an electronic balance. The device employs a transparent separation box and a porous partition structure, combined with a filter screen and valves to control fluid flow.
It enables dynamic observation and real-time weight recording of particle loss during seepage, clearly monitors particle changes during seepage, and provides complete dynamic weighing data.
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Figure CN223955383U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a geotechnical engineering technical field especially relates to a device of realizing oil - particle automatic separation and dynamic weighing. BACKGROUND
[0002] In modern many soil seepage research problems, transparent soil material and oil solution are widely used in the experiment. In the experiment, aiming at the problem that transparent soil material and oil solution are separated, generally adopts filter screen separation, then carries out cleaning and drying to the separated transparent soil particles, and finally carries out weighing measurement. Adopting the method to separate and measure can only obtain the total weight of particles after seepage, and cannot completely observe the dynamic change of particle loss in the seepage process. SUMMARY
[0003] In view of the above problems in the prior art, the utility model provides a device of realizing oil - particle automatic separation and dynamic weighing, and its technical scheme is: including feeding device, separation tank, electronic balance and collection device;
[0004] The feeding device is communicated with the left side of the separation tank, the separation tank is placed on the electronic balance, and the right side of the separation tank is communicated with the collection device.
[0005] As a preferred scheme, the separation tank is provided with a water inlet at the top of the side wall, the feeding device is connected with the water inlet, the separation tank is provided with a water outlet at the bottom of the side wall, the water outlet is connected with the collection device, the top of the separation tank is of an open type structure, a top plate is movably installed at the top, a porous partition plate is fixedly arranged on the bottom plate of the separation tank, and a filter screen is arranged on the surface of the porous partition plate.
[0006] As a preferred scheme, the feeding device comprises a seepage device and an oil tank which are connected in parallel through a feeding pipe, the outlet of the seepage device is provided with a first valve, and the outlet of the oil tank is provided with a second valve.
[0007] As a preferred scheme, the collection device comprises a liquid outlet pipe, the outlet of the liquid outlet pipe is located above the collection beaker, and a third valve is arranged on the liquid outlet pipe.
[0008] As a preferred scheme, the outer wall of the separation tank is of a transparent material.
[0009] The utility model has the advantages of:
[0010] The device adopts a transparent separation tank, can clearly and completely observe the dynamic change of particle loss in the seepage process, directly places the separation tank above the electronic balance, and can dynamically record the process of particle weight change. BRIEF DESCRIPTION OF DRAWINGS
[0011] Figure 1 It is whole structure schematic diagram of the utility model.
[0012] In the figure: seepage device 1, oil tank 2, separation tank 3, water inlet 301, filter screen 302, top plate 303, porous partition plate 304, water outlet 305, feeding pipe 4, electronic balance 5, liquid outlet pipe 6, collection beaker 7, feeding device 8, collection device 9, first valve 10, second valve 11, third valve 12. DETAILED DESCRIPTION
[0013] The utility model will be described in further detail below according to the drawings and specific embodiments.
[0014] EMBODIMENT
[0015] As Figure 1 shown in the figure, the device for realizing automatic oil-particle separation and dynamic weighing includes a feeding device 8, a separation tank 3, an electronic balance 5 and a collection device 9.
[0016] The feeding device 8 is in communication with the left side of the separation tank 3; the separation tank 3 is placed on the electronic balance 5; and the right side of the separation tank 3 is in communication with the collection device 9.
[0017] Further, the separation tank 3 is provided with a water inlet 301 at the top of the side wall, and the feeding device 8 is connected to the water inlet; the separation tank 3 is provided with a water outlet 305 at the bottom of the side wall, and the water outlet 305 is connected to the collection device 9; the top of the separation tank 3 is of an open structure, and a top plate 303 is movably installed on the top of the separation tank 3; and a porous partition plate 304 is fixedly arranged on the bottom plate of the separation tank 3, and the surface of the porous partition plate 304 is provided with a filter screen 302.
[0018] Further, the feeding device 8 includes a seepage device 1 and an oil tank 2 connected in parallel through a feeding pipe; the outlet of the seepage device 1 is provided with a first valve 10; and the outlet of the oil tank 2 is provided with a second valve 11.
[0019] Further, the collection device 9 includes a liquid outlet pipe 6, and the outlet of the liquid outlet pipe 6 is located above a collection beaker 7; and the liquid outlet pipe 6 is provided with a third valve 12.
[0020] Further, the outer wall of the separation tank 3 is made of transparent material.
[0021] The above device is used as follows:
[0022] S1: open the second valve 11, close the first valve 10 and the third valve 12, input the oil solution from the oil tank 2 into the separation tank 3 until the separation tank is filled with the oil solution;
[0023] S2: open the electronic balance 5, peel, and prepare for weighing and counting;
[0024] S3: open the first valve 10, close the second valve 11, input the oil particle mixed solution into the separation tank 3 from the seepage device 1, then open the third valve 12, make the separated oil solution flow into the collection beaker 7;
[0025] S4: after the separation and dynamic weighing are completed, empty the oil solution in the separation tank 3, open the top plate 303 of the separation tank 3, and take out the transparent soil particles.
Claims
1. A device for automatically separating oil and particles and dynamically weighing them, characterized in that: It comprises a feeding device (8), a separation tank (3), an electronic balance (5) and a collecting device (9). The feeding device (8) is communicated with the left side of the separation tank (3); the separation tank (3) is placed on the electronic balance (5); the right side of the separation tank (3) is communicated with the collecting device (9).
2. The device of claim 1, wherein, The top of the side wall of the separation tank (3) is provided with a water inlet (301), the feeding device (8) is connected with the water inlet, the bottom of the side wall of the separation tank (3) is provided with a water outlet (305), the water outlet (305) is connected with the collecting device (9), the top of the separation tank (3) is of an open structure, a top plate (303) is movably installed on the top of the separation tank (3), a porous partition plate (304) is fixedly arranged on the bottom plate of the separation tank (3), and a filter screen (302) is arranged on the surface of the porous partition plate (304).
3. The device of claim 1, wherein, The feeding device (8) comprises a seepage device (1) and an oil tank (2) which are connected in parallel through a feeding pipe, the outlet of the seepage device (1) is provided with a first valve (10), and the outlet of the oil tank (2) is provided with a second valve (11).
4. The device of claim 1, wherein, The collecting device (9) comprises a liquid outlet pipe (6), the outlet of the liquid outlet pipe (6) is located above a collecting beaker (7), and a third valve (12) is arranged on the liquid outlet pipe (6).
5. The device of claim 1, wherein, The outer wall of the separation tank (3) is made of transparent material.