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A storage device for weathered soil after sampling for geological exploration

A storage device and weathered soil technology, applied in unloading devices, external accessories, internal accessories, etc., can solve the problems of broken plastic ziplock bags, inconvenient movement of operators, and affecting work efficiency

Active Publication Date: 2020-07-07
太原新晋岩土工程勘察检测有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0005] In order to overcome that when many plastic ziplock bags containing weathered soil are placed in pockets or containers, since the soil contains sand, the friction between the soil and the plastic ziplock bags will easily cause the plastic ziplock bags to be broken, which will cause the soil to mix with each other, and the operation Too many weathered soil samples on the body of the operator will also cause inconvenience to the operator, thereby affecting the efficiency of the work. The technical problem to be solved: provide a layered, one-by-one storage of weathered soil samples, which can store the weathered soil samples. The soil sample is compacted to avoid the friction between the soil and the plastic ziplock bag, which will cause the plastic ziplock bag to be broken, and to avoid the mixing of weathered soil samples, which can reduce the burden on the operator. The post-sampling storage device for weathered soil for geological exploration

Method used

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  • A storage device for weathered soil after sampling for geological exploration
  • A storage device for weathered soil after sampling for geological exploration
  • A storage device for weathered soil after sampling for geological exploration

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0019] A storage device for weathered soil sampling after geological exploration, such as Figure 1-3 As shown, it includes cylinder body 1, outrigger 2, placement frame 4, L-shaped sliding rod 6, first spring 7 and driving device 8, outrigger 2 is installed at the bottom of cylinder body 1, and cylinder body 1 is connected by welding Connected with the legs 2, the cylinder 1 is evenly spaced with openings 3, and the opening 3 is provided with a placement frame 4, and the cylinder 1 is evenly spaced with guide holes 5, and the guide holes 5 are located below the opening 3 and opposite to it. Correspondingly, an L-shaped slide bar 6 is installed on the outer bottom of the placement frame 4, and the placement frame 4 is connected to the L-shaped slide bar 6 by welding. A first spring 7 is connected with the inner wall of the barrel 1 , and a driving device 8 is arranged inside the barrel 1 .

[0020] The driving device 8 includes a round hole bearing 81, an inner hexagonal slee...

Embodiment 2

[0024] On the basis of Example 1, such as Figure 1-4 As shown, a clamping device 9 is also included, and the clamping device 9 includes a small piston 92, a screw rod 93, a large piston 94, a movable rod 95, a third spring 96 and a splint 97, and the lower part of the placement frame 4 has a special-shaped cavity 91 The bottom of the special-shaped cavity 91 is slidably provided with a small piston 92, and the outside of the lower part of the placement frame 4 is screwed with a screw 93, and the inner end of the screw 93 is in contact with the small piston 92. The cavity 91 is filled with liquid, and the liquid is located between the small piston 92 and the large piston 94. The upper part of the special-shaped cavity 91 is slidingly provided with a movable rod 95, and a third spring 96 is connected between the inner end of the movable rod 95 and the outside of the large piston 94. , movable bar 95 outer ends are equipped with clamping plate 97, and movable bar 95 is connected...

Embodiment 3

[0029] On the basis of Example 2, such as Figure 1-4 As shown, it also includes a clamping rod 15, a handle 16 and a fifth spring 17. There is a second opening 14 on the right side of the lower part of the cylindrical body 1. The second opening 14 is intersected with the first opening 86. The second opening 14, the sliding type is provided with a clamping rod 15, the right end of the clamping rod 15 is equipped with a handle 16, the clamping rod 15 is connected with the handle 16 by welding, the fifth spring 17 is connected between the handle 16 and the outer surface of the cylindrical body 1, the second Five springs 17 are wound on the clamp rod 15, and the outer hexagon rod 84 bottom has two annular grooves 18, and the clamp rod 15 is positioned in the circular groove 18.

[0030] The working principle of this device is as follows: through the fixing of the clamping rod 15 and the annular groove 18, when the device is moved, the pedal 88 will not be accidentally touched to ...

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PUM

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Abstract

The invention relates to a storage device, in particular to a geological exploration saprolite sampling and storing device, and provides a geological exploration saprolite sampling and storing devicewhich can store saprolite samples one by one in a layered mode, can compress the saprolite samples to prevent the saprolite samples from being mixed and can relieve the burden of an operator. The geological exploration saprolite sampling and storing device comprises a barrel, supporting legs and the like. The supporting legs are mounted at the bottom of the barrel. The geological exploration saprolite sampling and storing device can drive a cam to move downwards through a pedal and accordingly can drive containing frames to move outwards through the cam. Thus, the operator can put the sampledsaprolite into the containing frames. Under the action of clamping plates, the geological exploration saprolite sampling and storing device can compress the saprolite samples placed in the containingframes. Under the action of a square bar turning handle, the operator can place and take the saprolite samples without holding a rotary disk all the time. Thus, the geological exploration saprolite sampling and storing device can be convenient to use.

Description

technical field [0001] The invention relates to a storage device, in particular to a post-sampling storage device for weathered soil for geological exploration. Background technique [0002] Geological prospecting is the investigation and research activity of conducting geological exploration and detection through various means and methods, determining the appropriate bearing layer, determining the foundation type and calculating the foundation parameters according to the foundation bearing capacity of the bearing layer. It is the discovery of mineral deposits with industrial significance in the general survey of mineral resources. In order to ascertain the quality and quantity of mineral products, as well as the technical conditions for mining and utilization, provide mineral reserves and geological data required for mine construction design, and analyze rocks and strata in a certain area. Conduct investigation and research work on geological conditions such as geology, str...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): B65D25/02B65D25/24B65D25/10B65D25/38
CPCB65D25/02B65D25/10B65D25/24B65D25/38
Inventor 李定华邹瑜江玮颜昌文
Owner 太原新晋岩土工程勘察检测有限公司