CN215310676U - Complex foundation operating mode is with dashing ware anti-return filtration - Google Patents
Complex foundation operating mode is with dashing ware anti-return filtration Download PDFInfo
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- CN215310676U CN215310676U CN202023228860.0U CN202023228860U CN215310676U CN 215310676 U CN215310676 U CN 215310676U CN 202023228860 U CN202023228860 U CN 202023228860U CN 215310676 U CN215310676 U CN 215310676U
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Abstract
The utility model relates to an anti-backflow filtering structure of a vibroflot for complex foundation working conditions, which comprises an end cover main body (101) arranged on an outer shell of the vibroflot, wherein a water cavity is arranged in the end cover main body (101), a gland (102) is pressed on the opening end of the water cavity of the end cover main body (101), a water inlet of the gland (102) is communicated with the water cavity, a one-way valve (103) is arranged on the water inlet, a water inlet flow passage (104) is arranged on the side wall of the end cover main body (101), and the water inlet flow passage (104) is communicated with the water cavity of the end cover main body (101). The utility model relates to a vibroflotation device anti-backflow filtering structure for complex foundation working conditions, which can effectively prevent backflow and filter water quality.
Description
Technical Field
The utility model relates to a structure with backflow prevention and water quality filtering functions, which is applied to a vibroflotation device, so that the vibroflotation device can be applied to complex geological working conditions, and belongs to the technical field of vibroflotation devices.
Background
Nowadays, with the gradual deepening of new capital construction in fourteen-five planning, more and more construction occasions are provided for complex foundation working conditions. However, the conventional vibroflotation device is lack of anti-backflow design, the internal water channel is easy to block due to backflow, once the internal water channel is blocked, the device can only be stopped for maintenance, the construction progress is delayed, the blockage cleaning difficulty is extremely high, and the cost is extremely high; meanwhile, due to the limitation of a field construction site, cooling water can only be used on the spot, the water quality of a water source cannot be guaranteed, and once a filtering system at a water pump breaks down, impurities such as silt, pebbles and the like enter a water channel of the vibroflot to cause channel blockage and shutdown failure. In view of the foregoing, there is a need for a filtering structure of a vibroflot for preventing backflow.
Disclosure of Invention
The utility model aims to overcome the defects and provide the anti-backflow filtering structure of the vibroflotation device for the complex foundation working condition, which can effectively prevent backflow and filter water quality.
The purpose of the utility model is realized as follows:
the utility model provides a complicated ground operating mode is with shaking towards ware anti-return filtration, contains and installs in the end cover main part that shakes towards the ware shell body, be provided with the water cavity in the end cover main part, and the gland pressfitting is served at the water cavity opening of end cover main part, the water inlet and the water cavity of gland are linked together, and install the check valve on the water inlet, be provided with the water inlet runner on the lateral wall of end cover main part, the water inlet runner is linked together with the water cavity of end cover main part.
The utility model relates to a vibroflotation device anti-backflow filtering structure for complex foundation working conditions.
The utility model relates to a vibroflotation device anti-backflow filtering structure for complex foundation working conditions, wherein two water inlet flow passages are arranged on the left and right sides, two filter screens are arranged, the water cavity of an end cover main body is divided into a left cavity, a middle cavity and a right cavity which are separated from each other by the two filter screens, a water inlet on a gland is communicated with the middle cavity, and the two water inlet flow passages are respectively communicated with the left cavity and the right cavity.
Compared with the prior art, the utility model has the beneficial effects that:
according to the utility model, through the design of the one-way valve, the water flow in the water channel cannot flow reversely, and the water stored in the water channel is utilized to play a role in preventing backflow, so that the backflow phenomenon is avoided at extremely low cost; meanwhile, through the introduction of the filter plate, the water flow entering the water channel of the vibroflotation device is ensured not to contain impurities, the water quality reliability in operation is ensured, and the service life of the vibroflotation device is prolonged.
Drawings
Fig. 1 is a schematic structural diagram of a vibroflot with an anti-backflow filter structure for complex foundation conditions.
Fig. 2 is a schematic structural diagram of an end cover main body of the anti-backflow filter structure of the vibroflot for complex foundation working conditions.
Wherein:
the end cover comprises an end cover main body 101, a gland 102, a one-way valve 103, a water inlet flow passage 104 and a filter screen 105.
Detailed Description
Referring to fig. 1 and 2, the disclosure relates to a vibroflot backflow prevention filtering structure for complex foundation working conditions, which comprises an end cover main body 101 installed on an outer shell of the vibroflot, wherein a water cavity is arranged in the end cover main body 101, a gland 102 is pressed on an opening end of the water cavity of the end cover main body 101, a water inlet of the gland 102 is communicated with the water cavity, a one-way valve 103 is installed on the water inlet, a water inlet flow passage 104 is arranged on a side wall of the end cover main body 101, the water inlet flow passage 104 is communicated with the water cavity of the end cover main body 101, a filter screen 105 is installed in the water cavity of the end cover main body 101, and the filter screen 105 is located between the water inlet of the gland 102 and the water inlet flow passage 104, so as to perform a secondary filtering effect on water quality;
furthermore, two water inlet channels 104 are arranged on the left and right sides, two filter screens 105 are arranged, the two filter screens 105 divide the water cavity of the end cover main body 101 into a left cavity, a middle cavity and a right cavity which are separated from each other, the water inlet on the gland 102 is communicated with the middle cavity, and the two water inlet channels 104 are respectively communicated with the left cavity and the right cavity;
when the water channel is installed, the water channel is communicated with the water channel on the outer shell of the vibroflot through the water inlet flow channel 104 on the end cover main body 101, so that water entering the water cavity after being filtered by the one-way valve 103 is guided into the water channel of the vibroflot through the water inlet flow channel 104;
in addition: it should be noted that the above-mentioned embodiment is only a preferred embodiment of the present patent, and any modification or improvement made by those skilled in the art based on the above-mentioned conception is within the protection scope of the present patent.
Claims (3)
1. The utility model provides a complicated ground operating mode is with dashing ware anti-return filtration, its characterized in that: contain and install in end cover main part (101) of shaking towards ware shell body, be provided with the water cavity in end cover main part (101), and gland (102) pressfitting is served at the water cavity opening of end cover main part (101), the water inlet and the water cavity of gland (102) are linked together, and install check valve (103) on the water inlet, be provided with into water runner (104) on the lateral wall of end cover main part (101), it is linked together with the water cavity of end cover main part (101) to advance water runner (104).
2. The anti-backflow filter structure of the vibroflot for the complex foundation working condition as claimed in claim 1, wherein: a filter screen (105) is installed in a water cavity of the end cover main body (101), and the filter screen (105) is located between a water inlet of the pressing cover (102) and the water inlet flow channel (104).
3. The anti-backflow filter structure of the vibroflot for the complex foundation working condition as claimed in claim 2, wherein: be provided with two about inlet channel (104), filter screen (105) are provided with two, and two filter screens (105) separate the water cavity of end cover main part (101) for left cavity, well cavity and the right cavity of alternate segregation, and the water inlet on gland (102) is linked together with well cavity, and two inlet channel (104) are linked together with left cavity and right cavity respectively.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202023228860.0U CN215310676U (en) | 2020-12-29 | 2020-12-29 | Complex foundation operating mode is with dashing ware anti-return filtration |
Applications Claiming Priority (1)
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CN202023228860.0U CN215310676U (en) | 2020-12-29 | 2020-12-29 | Complex foundation operating mode is with dashing ware anti-return filtration |
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CN215310676U true CN215310676U (en) | 2021-12-28 |
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CN202023228860.0U Active CN215310676U (en) | 2020-12-29 | 2020-12-29 | Complex foundation operating mode is with dashing ware anti-return filtration |
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2020
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