CN205580776U - Geologic research special rock ore deposit sample and composition identification apparatus thereof - Google Patents
Geologic research special rock ore deposit sample and composition identification apparatus thereof Download PDFInfo
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- CN205580776U CN205580776U CN201620152950.0U CN201620152950U CN205580776U CN 205580776 U CN205580776 U CN 205580776U CN 201620152950 U CN201620152950 U CN 201620152950U CN 205580776 U CN205580776 U CN 205580776U
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Abstract
The utility model provides a geologic research special rock ore deposit sample and composition identification apparatus thereof, relates to a rock ore deposit sampling device, uses the sampling device of electric hammer, sampling drill bit, a screening section of thick bamboo (14), rock specimen box (21) and rock container (34) formation, through sample, preliminary screening, acquire rock power, the encapsulation of rock post, sample information mark, multi point sampled, laboratory analysis and acquire the rock specimen data, the utility model discloses utilizing purpose -made sampling drill bit structure, not only can once acquireing the rock post and accord with the rock specimen powder that the composition was appraised, the pollution of rock specimen can be avoided to the rock specimen box of field usage moreover.
Description
[technical field]
The present invention relates to a kind of rock ore deposit sampler, especially relate to the sampling of a kind of geological research special rock ore deposit and Components identification device thereof.
[background technology]
Known, the geologic structure complexity of China is various, various content of mineral substances enrich, in order to obtain the mineral content in rock ore deposit, current rock ore deposit sampler mainly taps, by geologic hammer, the rock block taken off or electric tool obtains rock block as sample, owing to rock surface is by wind and weather or acid rain corrosion, sample composition is not ideal, using common vessel by the rock sample band of acquisition to laboratory, then rock sample specimen is pulverized " obtaining 50 mesh left and right powder " by disintegrating apparatus, it is grouped into detect the one-tenth of rock forming mineral matter exactly, need to by laboratory such as X-fluorescence, Atomic Absorption, MS, the common instruments such as M6 are analyzed, analyze its mineralogical composition, content, granularity, structure structure and secondary change etc., to obtain accurate data;Above-mentioned rock sample container not only usage amount is very big, easy contaminated samples, the problem and information labeling easily causes confusion;In taking back lab process, the time cycle is the most relatively long, and the rock sample disintegrating apparatus that the later stage uses the most easily pollutes rock sample.
[summary of the invention]
In order to overcome the deficiency in background technology, the open a kind of geological research special rock ore deposit sampling of the present invention and Components identification device thereof, utilize special chisel bit structure, not only can once obtain rock post and meet the rock sample powder of Components identification, and the rock sample box of onsite application can avoid the pollution of rock sample.
For achieving the above object, the present invention adopts the following technical scheme that
The sampling of a kind of geological research special rock ore deposit and Components identification device thereof, including electric hammer, chisel bit, sifting barrel, rock sample box and rock container, one end of chisel bit drillstock is arranged on the chuck of electric hammer, cylinder one end of described chisel bit is provided with alloy hoop, alloy hoop outer ring surface is interval with a plurality of V-arrangement gap, inserted link is inserted in the necking down chamber of the cylinder lumen body other end, a plurality of carbide button is distributed on end face in inserted link cylinder, the protruding fixture block that described inserted link outer end outer rim is arranged is stuck in multiple bayonet sockets that the cylinder other end is arranged, the other end of drillstock connects in the middle part of inserted link outer face.
The sampling of described geological research special rock ore deposit and Components identification device thereof, the collet rear of described electric hammer is cased with assist handle, and the hammer body rear lower of collet rear is provided with main handle, and switch is arranged on the internal upper part of main handle.
The sampling of described geological research special rock ore deposit and Components identification device thereof, the hammer body bottom anterior at the main handle of electric hammer is provided with battery, battery forms self-powered electric hammer.
Owing to using technical scheme as above, there is advantages that
The sampling of geological research of the present invention special rock ore deposit and Components identification device thereof, utilize special chisel bit structure, rock stratum can be goed deep into and obtain unpolluted rock sample, construct for later stage Study on ore structure, obtain the degree of oxidation of Ore internal layer, divide ore type, grasp its regularity of distribution and establishment mineral deposit or the mineral of ore body and ore type scattergram provides foundation accurately;When can preserve as sample mark especially for the rock post obtained or check, density and granularity to mineral can obtain direct function, and when a sampling, line sampling or face sampling, data are the most accurate, according to the most reliable;Analyzing institute's used time not at rock sample powder, the rock sample granule of acquisition and rock post can be as standby;The present invention is applicable to the collection of multiple rock stratum.
[accompanying drawing explanation]
Fig. 1 is the sampling procedure figure of the present invention;
Fig. 2 is the chisel bit of present invention mounting structure schematic diagram on electric hammer;
Fig. 3 is sifting barrel and the rock sample box attachment structure schematic diagram of the present invention;
Fig. 4 is the rock sample box structural representation of the present invention;
Fig. 5 is the rock sample box assembling structural representation of the present invention;
Fig. 6 is the chisel bit structural representation of the present invention;
Fig. 7 is the rock structure of container schematic diagram of the present invention;
In figure: 1, alloy hoop;2, cylinder;3, neck is expanded;4, drillstock;5, chuck;6, assist handle;7, switch;8, main handle;9, battery;10, lid;11, external screw thread contiguous block;12, female thread A;13, cavity;14, sifting barrel;15, rock sample granule;16,50 eye mesh screen;17, retaining ring;18, external screw thread face;19, female thread B;20, rock sample powder;21, rock sample box;22, upper cover;23, external screw thread;24, rock sample chamber;25, tooth is fed;26, V-arrangement gap;27, cavity;28, necking down chamber;29, bayonet socket;30, carbide button;31, inserted link;32, protruding fixture block;33, draw-in groove;34, rock container;35, rock post.
[detailed description of the invention]
Can be explained in more detail the present invention by the following examples, the open purpose of the present invention is intended to all changes and improvements in the protection scope of the invention, the invention is not limited in the following examples;
Sample and Components identification device in conjunction with the geological research special rock ore deposit described in accompanying drawing 2~7, including electric hammer, chisel bit, sifting barrel 14, rock sample box 21 and rock container 34, one end of chisel bit drillstock 4 is arranged on the chuck 5 of electric hammer, cylinder 2 one end of described chisel bit is provided with alloy hoop 1, alloy hoop 1 outer ring surface is interval with a plurality of V-arrangement gap 26, inserted link 31 is inserted in the necking down chamber 28 of cylinder 2 inner chamber body 27 other end, a plurality of carbide button 30 is distributed on end face in inserted link 31 cylinder 2, the protruding fixture block 32 that described inserted link 31 outer end outer rim is arranged is stuck in multiple bayonet sockets 29 that cylinder 2 other end is arranged, the other end of drillstock 4 connects in the middle part of inserted link 31 outer face.
In conjunction with accompanying drawing 2, chuck 5 rear portion of described electric hammer is cased with assist handle 6, and the hammer body rear lower at chuck 5 rear portion is provided with main handle 8, and switch 7 is arranged on the internal upper part of main handle 8;It is provided with battery 9 in the hammer body bottom of main handle 8 front portion of electric hammer, battery 9 forms self-powered electric hammer.
In conjunction with accompanying drawing 2 or 6, one end of described chisel bit cylinder 2 is fixing connects alloy hoop 1, the outer ring surface inner face of alloy hoop 1 is set to the wealthy mouth of loudspeaker, necking down taper surface it is provided with outside the outer ring surface of alloy hoop 1, the sharp annular being formed alloy hoop 1 outer shroud end face by the wealthy mouth of the loudspeaker of alloy hoop 1 and necking down taper surface feeds face, sharp annular at alloy hoop 1 feeds and is interval with a plurality of V-arrangement gap 26 on face, sharp annular between V-arrangement gap 26 feeds to be formed on face and feeds tooth 25 two-by-two, alloy hoop 1 outer edge surface of corresponding each described V-arrangement gap 26 is respectively equipped with the sludge groove of through alloy hoop 1 rear end;The draw-in groove 33 that chisel bit drillstock 4 one end is arranged is stuck on the chuck 5 of electric hammer, and the other end of drillstock 4 is provided with expansion neck 3, in the middle part of the described fixing outer face connecting inserted link 31 of expansion neck 3.
In conjunction with accompanying drawing 3, the lower end outer rim of described sifting barrel 14 is provided with the external screw thread face 18 connecting rock sample box 21 female thread suitable for reading B19, the end opening of sifting barrel 14 cavity 13 is provided with 50 eye mesh screens 16, described 50 eye mesh screens 16 are fixed by retaining ring 17, inwall suitable for reading at sifting barrel 14 is provided with female thread A12, and the external screw thread contiguous block 11 covering 10 bottoms is connected with described female thread A12.
In conjunction with accompanying drawing 3,4 or 5, the rock sample chamber 24 of the described rock sample box 21 female thread B19 that is provided with suitable for reading, the external screw thread 23 that upper cover 22 bottom outer rim is arranged connects the female thread B19 of rock sample box 21.
In conjunction with accompanying drawing 7, described rock container 34 inner chamber is circular configuration, is provided with sealing lid on rock container 34 top.
The use step of the geological research special rock ore deposit sampling Components identification device be given in conjunction with accompanying drawing 1 and accompanying drawing 2~7, specific as follows:
1), sampling:
Chisel bit is arranged on the chuck 5 of electric hammer, geologic hammer is used to be peeled off on crag top layer, use chisel bit that crag released part is sampled, go deep into inside, rock stratum when alloy hoop 1 drills through, rock post 35 end obtained in cylinder 2 is ground by the carbide button 30 on inserted link 31, rock sample granule 15 will be full of cylinder 2 rear portion and rock post 35 is outside and between cylinder 2 cavity 27 wall, at this moment just synchronizes in cylinder 2 to obtain rock post 35 and rock sample granule 15;
2), preliminary screening:
Take a set of rock sample box 21 and sifting barrel 14, take off the upper cover 22 of rock sample box 21, the external screw thread face 18 of sifting barrel 14 bottom is connected standby with the female thread B19 of rock sample box 21;
3), rock dust is obtained:
Connect step one in the case of chisel bit slowly rotates, extract chisel bit, then by taking off chisel bit on electric hammer, rock sample granule 15 in chisel bit cylinder 2 is poured into the sifting barrel 14 of step 2 and covers the lid 10 of sifting barrel 14, make the rock sample powder 20 in rock sample granule 15 enter rock sample box 21 via 50 eye mesh screens 16 of sifting barrel 14 through repeatedly rocking, then take off sifting barrel 14 and use upper cover 22 to close rock sample box 21;Then pour the rock sample granule 15 in sifting barrel 14 into plastic bag to preserve in the lump with rock sample box 21.
4), rock post encapsulation:
Use pointed instrument to prize the rock post 35 in crag, rock post 35 is put in rock container 34 standby;
5), sample message mark:
By in rock sample box 21, rock container 34 and the plastic bag loading sack loading rock sample granule 15, record sample collecting place, gather the information such as people's name, time;
6), multi-point sampling:
The single-point determined according to collection purpose samples, uses abovementioned steps just can obtain multi-point sampling along the sampling of mineral ore wire or large area sampling;
7), lab analysis:
Send laboratory to be analyzed in the sample of all acquisitions, analyze comprise X-fluorescence, Atomic Absorption, MS or M6 instrument are analyzed;Then determine the data such as mineralogical composition and the paragenetic association of Ore, ore texture, the secondary change of mineral and content thereof according to analysis result, coordinate with material phase analysis, in order to determine ore oxidation degree, divide ore type, grasp its regularity of distribution;Work out mineral deposit or the mineral of ore body and ore type scattergram;
Each mineral constituent kind and content in Ore, available aforementioned multipoint sampling more accurate point, line, surface statistics;Then according to physical propertys such as the mineral crystal form measured, granularity, hardness, magnetic, electric conductivity, ore beneficiation processing method flow process and the rational technique index in later stage is solved, for improving the data foundation that the comprehensive utilization of recovery rate in ore-dressing and Ore provides relatively reliable.
Part not in the detailed description of the invention is prior art.
Claims (3)
- null1. a geological research special rock ore deposit sampling and Components identification device thereof,Including electric hammer、Chisel bit、Sifting barrel (14)、Rock sample box (21) and rock container (34),It is characterized in that: one end of chisel bit drillstock (4) is arranged on the chuck (5) of electric hammer,Cylinder (2) one end of described chisel bit is provided with alloy hoop (1),Alloy hoop (1) outer ring surface is interval with a plurality of V-arrangement gap (26),Inserted link (31) is inserted in the necking down chamber (28) of cylinder (2) inner chamber body (27) other end,A plurality of carbide button (30) is distributed on end face in inserted link (31) cylinder (2),The protruding fixture block (32) that described inserted link (31) outer end outer rim is arranged is stuck in multiple bayonet sockets (29) that cylinder (2) other end is arranged,The other end of drillstock (4) connects in the middle part of inserted link (31) outer face.
- The sampling of geological research the most according to claim 1 special rock ore deposit and Components identification device thereof, it is characterized in that: chuck (5) rear portion of described electric hammer is cased with assist handle (6), the hammer body rear lower at chuck (5) rear portion is provided with main handle (8), and switch (7) is arranged on the internal upper part of main handle (8).
- The sampling of geological research the most according to claim 2 special rock ore deposit and Components identification device thereof, it is characterized in that: the hammer body bottom anterior at the main handle (8) of electric hammer is provided with battery (9), battery (9) form self-powered electric hammer.
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CN201620152950.0U CN205580776U (en) | 2016-02-20 | 2016-02-20 | Geologic research special rock ore deposit sample and composition identification apparatus thereof |
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN105606398A (en) * | 2016-02-20 | 2016-05-25 | 长江大学 | Rock ore sampling and component identification device special for geological research |
CN109596385A (en) * | 2018-12-10 | 2019-04-09 | 贵州大学 | A kind of ROCK MECHANICS RESEARCH rock specimens sampling apparatus |
-
2016
- 2016-02-20 CN CN201620152950.0U patent/CN205580776U/en not_active Expired - Fee Related
Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN105606398A (en) * | 2016-02-20 | 2016-05-25 | 长江大学 | Rock ore sampling and component identification device special for geological research |
CN105606398B (en) * | 2016-02-20 | 2019-04-19 | 长江大学 | A kind of dedicated rock mine sampling of geological research and its Components identification device |
CN109596385A (en) * | 2018-12-10 | 2019-04-09 | 贵州大学 | A kind of ROCK MECHANICS RESEARCH rock specimens sampling apparatus |
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