Bionic seabed exploration sampling device

A sampling device and bionic technology, applied in the direction of sampling devices, etc., can solve the problems of inability to remove the surrounding environment of the target sampling layer, inability to achieve solid-liquid separation, and less sample sampling, and achieve the goal of reducing seawater infiltration, maintaining balance, and reducing area. Effect

Inactive Publication Date: 2020-08-28
陈品媚
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  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003] The existing seabed exploration sampling device cannot realize solid-liquid separation during sampling, so that the sample is soaked in seawater, resulting in less sample sampling, and cannot clean the surrounding environment of the target sampling layer, which may easily cause problems such as inconvenient sampling. Therefore, it is necessary to Further research on the basis of the seabed exploration sampling device provides a bionic seabed exploration sampling device

Method used

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  • Bionic seabed exploration sampling device
  • Bionic seabed exploration sampling device
  • Bionic seabed exploration sampling device

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Embodiment Construction

[0027] see Figures 1 to 8 Among them, in the embodiment of the present invention, a bionic seabed exploration sampling device includes: a device main body 1, a connecting chamber 101 and a floating platform 102, the top of the device main body 1 is equipped with a connecting chamber 101, and the top of the connecting chamber 101 is installed with Floating platform 102, floating balls 103 are installed at both ends of the bottom of floating platform 102, and the inside of device main body 1 and connecting chamber 101 are provided with sampling components, and the lower end of device main body 1 is provided with crushing components.

[0028] Preferably, the sampling component includes: a piston 104, a connecting cavity 101 and a feed port 2, the piston 104 is arranged at both ends inside the device main body 1, and a pull rod 106 is installed on the top of the piston 104, and a hydraulic rod 105 is installed on the top of the pull rod 106 , and the hydraulic rod 105 is in the s...

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Abstract

The invention provides a bionic seabed exploration sampling device. The device comprises a device main body, a connecting cavity and a floating platform, and the connecting cavity is formed in the topof the device main body; the floating platform is mounted at the top of the connecting cavity; floating balls are mounted at two ends of the bottom of the floating platform; sampling parts are arranged in the device main body and the connecting cavity; a crushing part is arranged at the lower end of the device main body; a suction pump sucks a sample into the device, meanwhile, a certain amount of seawater can be sucked, and one end of an arc-shaped plate is in a movable state through a movable shaft and swings along with the inertia of the arc-shaped plate in the rotating process, so that the sample in a wavy vase-shaped feeding cavity can be continuously beaten, seawater soakage in the sample is reduced, part of seawater in the device can be conveniently discharged through the water permeable holes, the area of the seawater in the device can be reduced, meanwhile, the moving flow speed of the seawater around the outside of the device can be decreased, the balance of the device can be maintained conveniently, and the seawater is prevented from driving the device to generate certain displacement during sampling.

Description

technical field [0001] The invention relates to the technical field of seabed exploration equipment, in particular to a bionic seabed exploration sampling device. Background technique [0002] Seabed exploration refers to the process of sampling, observing and investigating seabed resources, especially seabed mineral resources, in order to prove the types, reserves and distribution of resources. Seabed mineral resources are rich and distributed from coast to ocean, such as the global seabed The oil reserves are about twice that of the world's proven oil reserves, and the reserves of deep-sea manganese nodules and seabed hydrothermal deposits are also huge, which are yet to be explored and developed; [0003] The existing seabed exploration sampling device cannot realize solid-liquid separation when sampling, so that the sample is soaked in seawater, resulting in less sample sampling, and cannot clean the surrounding environment of the target sampling layer, which may easily ...

Claims

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Application Information

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IPC IPC(8): G01N1/02
CPCG01N1/02
Inventor 陈品媚
Owner 陈品媚
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