PORTABLE MULTIFUNCTIONAL TESTER FOR POLLUTANT EROSION EFFECT AND UNIDIMENSIONAL CONSOLIDATION AND TEST METHOD THEREOF
20220026342 ยท 2022-01-27
Assignee
Inventors
- Zexiang Wu (Wenzhou City, CN)
- Chuang Yu (Wenzhou City, CN)
- Xiaoqing Cai (Wenzhou City, CN)
- Dongmei Tu (Wenzhou City, CN)
Cpc classification
G01N3/14
PHYSICS
International classification
Abstract
A portable multifunctional tester for pollutant erosion effect, including a base, the ejection head of jacking device is provided with a container. The upper end and lower end of the sample are provided with an upper porous stone and a lower porous stone respectively. A metal cover plate is disposed on the upper porous stone. An ejector rod with a circular tray is fixed to the support. The stress controlled one-dimensional load test can be performed by putting weights on the circular tray. A pressure gauge is disposed on the ejector rod. A displacement meter is disposed on the top cover plate. The container has a water inlet and a water outlet connected to its inner chamber. The water inlet, circulating pump, accumulator and water outlet are connected by conduits. In addition, a unidimensional consolidation test and washing test method thereof is provided.
Claims
1. A portable multifunctional tester for pollutant erosion effect, comprising: a base, a support mounted on the base, a top cover plate disposed on a support, a jacking device disposed on the base, a strain controlled one-dimensional load test can be performed by using the jacking device; a container disposed on an ejection head of the jacking device; a sample box disposed in the container, the sample box can load samples; an ejector rod disposed on the support; a circular tray fixed to an upper end of the ejector rod; a gland disposed on a lower end of the ejector rod; the stress controlled one-dimensional load test can be performed by putting weights on the circular tray; a pressure gauge disposed on the ejector rod; the lower end of ejector rod being aligned with the upper porous stone; a displacement meter disposed on the top cover plate; the ejector pin of the displacement meter contacting the gland; the container having a water inlet and a water outlet connected to its inner chamber; wherein the water inlet, circulating pump, accumulator and water outlet are connected by conduits.
2. The portable multifunctional tester tor pollutant erosion effect defined in claim 1, wherein an upper end and a lower end of the sample box are provided with an upper porous stone and a lower porous stone respectively; the gland props the upper porous stone.
3. The portable multifunctional tester for pollutant erosion effect defined in claim 1, wherein the sample box is a square sample box; the sample box including a top plate, four side plates and a bottom plate; the bottom plate is made of permeable material; the bottom plate has a lower rectangular groove; the four side plates are inserted in the lower rectangular groove; the upper end of the side plates is provided with the top plate; a lower side face of the top plate is provided with an upper rectangular groove matching the lower rectangular groove; the side plates are stuck in the upper rectangular groove respectively; the side plates include a left side plate, a right side plate, a front side plate and a back side plate; the left side plate and right side plate are provided with circular holes for water-in or water-out; when the soil sample is put in the sample box, the partial side plate can be removed; the partial side plate is provided with multiple side plates with circular holes in different radii and quantities for replacement; the input/output water flow and washing position are regulated by using different side plates for washing test.
4. The portable multifunctional tester for pollutant erosion effect defined in claim 1, wherein the casing of the accumulator is wrapped in a heating unit, the heating unit is wrapped in an insulation envelope, there is a temperature sensor in the accumulator, there is a display equipment for displaying the temperature data measured by the temperature sensor on the insulation envelope.
5. The portable multifunctional tester for pollutant erosion effect defined in claim 3, wherein the portable multifunctional tester for pollutant erosion effect is provided with multiple buffer balls, the buffer balls are filled on one side of the sample where the partial side plate is removed, one side of the sample filled with buffer balls is provided with the water inlet, the water flow scours the buffer balls, the buffer balls make sure that the water flow is loaded on the side of sample in plan form; the side plates are fixed by locking mechanisms; a joint sealing strip is disposed between side plates.
6. The portable multi functional tester for pollutant erosion effect defined in claim 3, the left side plate and right side plate comprise an inner baffle and an outer clamping plate respectively; multiple through holes are distributed over the inner baffle; the inner sides of both ends of the front side plate and back side plate are provided with a slideway respectively; the outer clamping plate is inserted in the slide way from top to bottom for fixing; the inner baffle is on the inner side of outer clamping plate; multiple buffer balls wrapped in a net bag are disposed on the outer side of the right side plate: a filter net bag is disposed between the outer clamping plate and inner baffle of the left side plate.
7. The portable multifunctional tester for pollutant erosion effect defined in claim 3, wherein the locking mechanism includes a hook, and a spring jig fixed to the outer end of each side plate, the end of spring jig is provided with a hooking piece for hitching the hook; the spring jig hitches the hooks of two side plates to tighten two side plates.
8. The portable multifunctional tester for pollutant erosion effect defined in claim 7, wherein the joint sealing strip is made of sealing rubber, the end of side plate is cambered, both sides of joint sealing strip are provided with a cambered slot matching the end of side plate respectively; there is an inner spacer plate between two cambered slots; there is an outer side plate on the outer side of joint scaling strip; the end of the side plate is stuck in the cambered slot and clamping the inner spacer plate; the outer side plate adheres to the side plate depending on the elasticity of rubber.
9. The portable multifunctional tester for pollutant erosion effect defined in claim 1, wherein a clip is fixed to the upper end of the top cover plate, the clip is fitted over the ejector rod, one side of clip has an opening, the tension of opening is adjusted by a bolt, the bolt end is provided with a regulating handle.
10. A unidimensional consolidation and washing test method thereof using the portable multifunctional tester for pollutant erosion effect in claim 4, comprising the following steps: A. the undisturbed sample I is taken in situ using the sample box, and the undisturbed water is taken from the river nearby the site; B. the sample I is put in sample box to form sample, a lower porous stone 8 is disposed on the lower end of sample, an upper porous stone is disposed on the upper end of sample, filled with the undisturbed water for saturated immersion; C. the circulating pump and/or heating unit is actuated simulate the flow of water body and the original ambient temperature of water body, the water flow velocity is controlled by controlling the circulating pump to be coincident with the water velocity of the original water body; afterwards, the jacking device is actuated to make the ejector rod props the upper porous stone downwards for strain controlled consolidation test, or the jacking device is turned off; the weights are applied to the circular tray to perform the stress controlled consolidation test; D. the jacking device, circulating pump and heating unit are turned off, and the outer clamping plate of right side plate is removed according to the primal environment of sample I, the buffer bails wrapped in a net bag are disposed on the outer side of inner baffle of right side plate, and the circulating pump and/or heating unit is actuated again to simulate the flow of water body and the original ambient temperature of water body for a period of time, the mechanical data after the soil mass is washed are tested again, and the morphology of the sample II after washing is filmed; E. the data from Step C and Step D are combined for analysis.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE INVENTION
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[0023] As shown in
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[0028] The present invention provides the unidimensional consolidation and washing test method thereof using the aforethe tester, comprising the following steps. [0029] A. The undisturbed sample I is taken in situ using the sample box, and the undisturbed water is taken from the river nearby the site. [0030] B. The sample I is put in sample box 18 to form sample 6, a lower porous stone 8 is disposed on line lower end of sample 6, an upper porous stone 7 is disposed on the upper end of sample 6, filled with the undisturbed water for saturated immersion. [0031] C. The circulating pump 16 and/or heating unit is actuated to simulate the flow of water body and the original ambient temperature of water body, the water flow velocity is controlled by controlling the circulating pump 16 to be coincident with the water velocity of the original water body. Afterwards, the jacking device 4 is actuated to make the ejector rod 11 props the upper porous stone 7 downwards for strain controlled consolidation test, or the jacking device 4 is turned off, the weights are applied to the circular tray 11A to perform the stress controlled consolidation test. [0032] D. The jacking device 4, circulating pump 16 and heating unit are turned off, and the outer clamping plate 30 of right side plate 19B is removed according to the primal environment of sample I, the buffer balls 28 wrapped in a net bag 32 are disposed on the outer side of inner baffle 29 of right side plate 19B, and the circulating pump 16 and/or heating unit is actuated again to simulate the flow of water body and the original ambient temperature of water body for a period of time, the mechanical data after the soil mass is washed are tested again, and the morphology of the sample II after washing is filmed. [0033] E. The data from Step C and Step D are combined for analysis.