CN205243421U - Bore in remotely controlled's hole ore deposit of digging - Google Patents
Bore in remotely controlled's hole ore deposit of digging Download PDFInfo
- Publication number
- CN205243421U CN205243421U CN201521032375.2U CN201521032375U CN205243421U CN 205243421 U CN205243421 U CN 205243421U CN 201521032375 U CN201521032375 U CN 201521032375U CN 205243421 U CN205243421 U CN 205243421U
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- montant
- ore deposit
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- working bin
- bore
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Abstract
The utility model relates to a mining equipment field specifically is bore in remotely controlled's hole ore deposit of digging. The utility model provides a bore in remotely controlled's hole ore deposit of digging transforms into the slide rail with the support frame, and it can move on the support frame to make the ore deposit bore, has solved to utilize the jack to move the ore deposit originally to drill out the existing problem that the drill bit moving range is little, increased the remote control module simultaneously, adaptable hazardous environment. The utility model provides a bore in individual remotely controlled's ore deposit, can adapt to dangerous operational environment, has ensured operating personnel's safety, has strengthened the mobility, has improved mining efficiency.
Description
Technical field
The utility model relates to winning equipment field, be specially can remote control the ore deposit that digs a hole bore.
Background technology
Mining is in the earth's crust and technology and the science of earth's surface exploit mineral resources, and the mining of broad sense also comprises the exploitation of coal and oil. Mining industry is a kind of important primary industry, and metallic ore is the primary raw material of metallurgy industry, and non-metallic ore is important industrial chemicals and construction material. Mining activity, along with moving ahead of human civilization grows up, is counted also and has been had the history of thousands of years.
Deep layer mining person, rock above drive can produce sizable pressure, once reaching critical value, this pressure will cause rock rupture and rock waterfall, these interference cause production to stop, more unfortunately easily cause cutter's death, therefore it is vital reducing rock pressure, and one of method is ore bed is got through, and the pressure of accumulation is released.
Along with scientific and technological development, mining also develops into mechanization running from original manual operation. In winning equipment, bore in ore deposit is wherein most important, and the recovery process that ore deposit is drilled in exploration, location, pilot production and the later stage of mineral reserve has use.
Although the function that bore in ore deposit is a lot, but the actual conditions in mining process are also diversified, bore in existing ore deposit can not meet diversified demand in mining activity, has wasted manpower in addition in the artificial too much participation of recovery process, increase cost, increased potential safety hazard.
Utility model content
For the problems referred to above, the purpose of this utility model is to provide the ore deposit that digs a hole that can remote control and bores, bracing frame is transformed into slide rail, ore deposit is bored can move on bracing frame, solve and originally utilized jack to carry out movable ore to get out the existing little problem of drill bit moving range, increase remote control module simultaneously, can adapt to hazardous environment.
To achieve these goals, the utility model by the following technical solutions
Bore in the ore deposit that digs a hole that can remote control, and it comprises, cross bar 1, montant 2, draw-in groove 3, working bin 4, base 5, support bar 6, guide post 7, fixed muffle 8, drill bit 9, detector 10, power plant module 11, communication module 12, control module 13.
Described montant 2 arranges in pairs, between described montant 2, be provided with some cross bars 1, described cross bar 1 two ends are fixedly connected with respectively with two montants 2, some draw-in grooves 3 are set on described montant 2, described working bin 4 is slidably connected with montant 2, described working bin 4 inside are provided with power plant module 11, communication module 12, control module 13, described working bin 4 is fixedly connected with base 5, described base 5 is fixedly connected with support bar 6, described support bar 6 is fixedly connected with fixed muffle 8, described fixed muffle 8 is connected with guide post 7 is nested, described guide post 7 tops are fixedly connected with drill bit 9, described guide post 7 front ends are provided with detector 10, described detector 10 is fixedly connected with guide post 7, described detector 10 is connected with communication module 12, described communication module 12 is connected with control module 13, described power plant module 11 and detector 10, communication module 12, control module 13 connects respectively.
Described draw-in groove 3 equidistantly distributes on montant 2.
Described working bin 4 is provided with self-locking module with montant 2 junctions, working bin 4 can be fixed on to draw-in groove 3 places.
Described working bin 4 is provided with electronic snap lock with montant 2 junctions.
Described detector 10 is high-definition camera.
Described communication module 12 is wireless communication module.
The beneficial effects of the utility model
1, the utility model can carry out ore deposit brill by remote control.
2, the utility model can adapt to dangerous working environment, has ensured operating personnel's safety.
3, the utility model gets final product work by exploration, location, pilot production, exploitation in OPS, and can complete with same equipment.
4, the utility model has strengthened mobility, has improved mining efficiency.
Brief description of the drawings
Fig. 1 is structural representation of the present utility model.
Detailed description of the invention
For the problems referred to above, the purpose of this utility model is to provide the ore deposit that digs a hole that can remote control and bores, bracing frame is transformed into slide rail, ore deposit is bored can move on bracing frame, solve and originally utilized jack to carry out movable ore to get out the existing little problem of drill bit moving range, increase remote control module simultaneously, can perfectly adapt to hazardous environment.
To achieve these goals, the utility model by the following technical solutions
Bore in the ore deposit that digs a hole that can remote control, and it comprises, cross bar 1, montant 2, draw-in groove 3, working bin 4, base 5, support bar 6, guide post 7, fixed muffle 8, drill bit 9, detector 10, power plant module 11, communication module 12, control module 13.
Described montant 2 arranges in pairs, between described montant 2, be provided with some cross bars 1, described cross bar 1 two ends are fixedly connected with respectively with two montants 2, some draw-in grooves 3 are set on described montant 2, described working bin 4 is slidably connected with montant 2, described working bin 4 inside are provided with power plant module 11, communication module 12, control module 13, described working bin 4 is fixedly connected with base 5, described base 5 is fixedly connected with support bar 6, described support bar 6 is fixedly connected with fixed muffle 8, described fixed muffle 8 is connected with guide post 7 is nested, described guide post 7 tops are fixedly connected with drill bit 9, described guide post 7 front ends are provided with detector 10, described detector 10 is fixedly connected with guide post 7, described detector 10 is connected with communication module 12, described communication module 12 is connected with control module 13, described power plant module 11 and detector 10, communication module 12, control module 13 connects respectively.
Described draw-in groove 3 equidistantly distributes on montant 2.
Described working bin 4 is provided with self-locking module with montant 2 junctions, working bin 4 can be fixed on to draw-in groove 3 places.
Described working bin 4 is provided with electronic snap lock with montant 2 junctions.
Described detector 10 is high-definition camera.
Described communication module 12 is wireless communication module.
Below in conjunction with drawings and Examples, the utility model is described in further details
In Fig. 1,1-cross bar, 2-montant, 3-draw-in groove, 4-working bin, 5-base, 6-support bar, 7-guide post, 8-fixed muffle, 9-drill bit, 10-detector, 11-power plant module, 12-communication module, 13-control module.
As shown in Figure 1, described montant 2 arranges in pairs, between two montants 2, be provided with some cross bars 1 that balanced arrangement equidistantly distributes, described cross bar 1 two ends are fixedly connected with respectively with two montants 2, some draw-in grooves 3 are set on described montant 2, described working bin 4 is slidably connected with montant 2, and described working bin 4 inside are provided with power plant module 11, communication module 12, control module 13.
Described working bin 4 tops are fixedly connected with base 5, described base 5 tops are fixedly connected with support bar 6, described support bar 6 tops are fixedly connected with fixed muffle 8, described fixed muffle 8 is connected with guide post 7 is nested, described guide post 7 tops are fixedly connected with drill bit 9, described guide post 7 front ends are provided with detector 10, described detector 10 is fixedly connected with guide post 7, described detector 10 is connected with communication module 12, described communication module 12 is connected with control module 13, and described power plant module 11 is connected respectively with detector 10, communication module 12, control module 13.
Described draw-in groove 3 equidistantly distributes on two montants 2; Described working bin 4 is provided with self-locking module with montant 2 junctions, can be fixed on draw-in groove 3 places, and self-locking module is preferably electronic snap lock; On described fixed muffle 8, be provided with adjustment switch, can adjust flexibly the front and back position of guide post 7; Described detector 10 is high-definition camera; Described communication module 12 is wireless communication module.
Use embodiment
In mining, the detector 10 that is arranged on guide post 7 front ends is crossed communication module 12 by the information exchange of collecting and is transferred out, manipulation personnel adjust according to actual conditions the duty that bore in ore deposit after viewing information, and assign operational order, operational order conducts to control module 13 through communication module 12, control module 13 is adjusted the duty of working bin 4 and support bar 6, with reach adjust drill bit 9 positions and towards object.
Finally explanation is, above embodiment is only unrestricted in order to the technical solution of the utility model to be described, other amendments that those of ordinary skill in the art make the technical solution of the utility model or be equal to replacement, only otherwise depart from the spirit and scope of technical solutions of the utility model, all should be encompassed in the middle of claim scope of the present utility model.
Claims (3)
1. bore in the ore deposit that digs a hole that can remote control, and it is characterized in that, it comprises, cross bar (1), montant (2), draw-in groove (3), working bin (4), base (5), support bar (6), guide post (7), fixed muffle (8), drill bit (9), detector (10), power plant module (11), communication module (12), control module (13), wherein, described montant (2) arranges in pairs, between described montant (2), be provided with cross bar (1), described cross bar (1) two ends are fixedly connected with respectively with two montants (2), on described montant (2), be provided with some draw-in grooves (3), described working bin (4) is slidably connected with montant (2), described working bin (4) inside is provided with power plant module (11), communication module (12), control module (13), described working bin (4) is fixedly connected with base (5), described base (5) is fixedly connected with support bar (6), described support bar (6) is fixedly connected with fixed muffle (8), described fixed muffle (8) and nested connection of guide post (7), described guide post (7) top is fixedly connected with drill bit (9), described guide post (7) front end is provided with detector (10), described detector (10) is fixedly connected with guide post (7), described detector (10) is connected with communication module (12), described communication module (12) is connected with control module (13), described power plant module (11) and detector (10), communication module (12), control module (13) connects respectively, described draw-in groove (3) equidistantly distributes on montant (2).
2. bore in the ore deposit that digs a hole that can remote control according to claim 1, it is characterized in that, described working bin (4) is provided with self-locking module with montant (2) junction, working bin (4) is fixed on draw-in groove (3) and locates, and described working bin (4) is provided with electronic snap lock with montant (2) junction.
3. bore in the ore deposit that digs a hole that can remote control according to claim 1, it is characterized in that, the detector (10) that is arranged on guide post (7) front end is crossed communication module (12) by the information exchange of collecting and is transferred out, operational order conducts to control module (13) through communication module (12), control module (13) is adjusted working bin (4) and the duty of support bar (6), with reach adjustment drill bit (9) position and towards.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201521032375.2U CN205243421U (en) | 2015-12-14 | 2015-12-14 | Bore in remotely controlled's hole ore deposit of digging |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN201521032375.2U CN205243421U (en) | 2015-12-14 | 2015-12-14 | Bore in remotely controlled's hole ore deposit of digging |
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CN205243421U true CN205243421U (en) | 2016-05-18 |
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CN201521032375.2U Expired - Fee Related CN205243421U (en) | 2015-12-14 | 2015-12-14 | Bore in remotely controlled's hole ore deposit of digging |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN105401880A (en) * | 2015-12-14 | 2016-03-16 | 河南广度超硬材料有限公司 | Remotely-controllable tunnelling mine drill |
-
2015
- 2015-12-14 CN CN201521032375.2U patent/CN205243421U/en not_active Expired - Fee Related
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN105401880A (en) * | 2015-12-14 | 2016-03-16 | 河南广度超硬材料有限公司 | Remotely-controllable tunnelling mine drill |
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Legal Events
Date | Code | Title | Description |
---|---|---|---|
C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20160518 Termination date: 20161214 |