CN201896578U - Outburst prevention drilling rig - Google Patents

Outburst prevention drilling rig Download PDF

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Publication number
CN201896578U
CN201896578U CN2010206337622U CN201020633762U CN201896578U CN 201896578 U CN201896578 U CN 201896578U CN 2010206337622 U CN2010206337622 U CN 2010206337622U CN 201020633762 U CN201020633762 U CN 201020633762U CN 201896578 U CN201896578 U CN 201896578U
Authority
CN
China
Prior art keywords
sensor
equipment assembly
magnetic induction
slewing equipment
drilling rig
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CN2010206337622U
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Chinese (zh)
Inventor
赵彤宇
郝志国
李波
黎智
葛玉丽
梁誉
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Power Polytron Technologies Inc
Original Assignee
Zhengzhou GL Tech Co
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Zhengzhou GL Tech Co filed Critical Zhengzhou GL Tech Co
Priority to CN2010206337622U priority Critical patent/CN201896578U/en
Application granted granted Critical
Publication of CN201896578U publication Critical patent/CN201896578U/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

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Abstract

The utility model discloses an outburst prevention drilling rig, which comprises a drilling rig frame. A rotary equipment assembly is arranged on the drilling rig frame and carries out reciprocating movement on the drilling rig frame, a magnetic induction sensor and a magnet are arranged on the outburst prevention drilling rig, wherein the magnetic induction sensor is used for counting the times of the reciprocating movement of the rotary equipment assembly, the magnet is matched with the magnetic induction sensor, one of the magnetic induction sensor and the magnet is fixedly arranged on the rotary equipment assembly and carries out reciprocating movement along with the rotary equipment assembly, the other of the magnetic induction sensor and the magnet is fixedly arranged on the drilling rig frame or is fixedly arranged on a support frame independent of the drilling rig frame, and the signal output end of the magnetic induction sensor is connected with a counting circuit through a transmission line. The outburst prevention drilling rig has a simple structure and is convenient and practical. By adopting contact-free measurement, the outburst prevention drilling rig has a long service life, high safety and low failure rate, the hole depth can be detected during drilling, the hole collapse can be avoided, the effect on detection of the hole depth caused by a curved drilling trajectory after drilling can be prevented, and normal production can be guaranteed.

Description

Rigs against outburst
Technical field
The utility model belongs to the colliery and uses the safe production equipment field, relates in particular to a kind of rigs against outburst.
Background technology
Existing mine mainly comprises gadder with rig, the slewing equipment assembly is set on the gadder, level is provided with guide rail on gadder, the slewing equipment assembly is positioned on the guide rail and with guide rail and is slidingly connected, the slewing equipment assembly comprises and is used to promote the propulsion plant that rig slewing equipment assembly reciprocatingly slides, the whirligig that is used to clamp the clamping device of drilling rod and is used to drive the clamping device rotation, described propulsion plant, clamping device and whirligig provide power by dynamical system, on guide rail, also be provided for the clamper of supports drill rods, by the slewing equipment assembly drilling rod is squeezed in the wall of coal seam during use, drilling rod is assisted the location by drill pipe clamp, be fixedly clamped drilling rod and drive the drilling rod rotary drilling of slewing equipment assembly in boring procedure, the slewing equipment assembly endwisely slips along guide rail with drilling rod simultaneously, after creeping into a certain progress the slewing equipment assembly along lead rail axis to returning certain distance, clamp another root drilling rod again and drive its rotary drilling, repeat above-mentioned action.Drilling rod is driven by the slewing equipment assembly and screws in the wall of coal seam, and by the reciprocating motion of slewing equipment assembly, thereby the standard operation drilling rod of equal length is squeezed in the wall of coal seam one by one, realizes the boring purpose.In the time the standard operation drilling rod in the coal seam wall boring need being taken out, again by the slewing equipment assembly with drilling rod extraction one by one, then depth survey is carried out in the boring of boring.But there is certain pressure in hole wall during because hole, after drilling rod is taken out from boring, the as easy as rolling off a log hole of collapsing that occurs of holing, thereby cause boring to stop up, the detector that be used to measure hole depth this moment can't accurately measure drilling depth, and the normal crooked or outstanding accuracy of measurement that also can have influence on detector that occurs makes the staff can't know drilling depth accurately, thereby impacts to ordinary production in the boring.The depth relationship of boring is to the gas drainage under suction effect, if can not accurately detect drilling depth, impact not only can for follow-up gas drainage under suction and coal-bed flooding etc., also can bring potential serious hidden danger directly for the Safety of Coal Mine Production in later stage, thereby impact to safety in production, it is significant for mine safety production therefore accurately to measure drilling depth.
The utility model content
The purpose of this utility model provides a kind of rigs against outburst, to solve the technical problem that can't accurately measure drilling depth in the prior art.
For achieving the above object, the utility model adopts following technical scheme: rigs against outburst, comprise gadder, gadder is provided with the slewing equipment assembly, the slewing equipment assembly moves reciprocatingly on gadder, described rigs against outburst is provided with and is used for the slewing equipment assembly is moved back and forth the magnetic induction sensor of time counting number and the magnet that uses with the magnetic induction sensor corresponding matching, in magnetic induction sensor and the magnet one of them is fixedly installed on the slewing equipment assembly and moves reciprocatingly with the slewing equipment assembly, another is installed on the gadder or is installed on the support that is independent of outside the gadder, is connected with counting circuit at the signal output part of magnetic induction sensor by transmission line.
Described magnetic induction sensor is a Hall element, and this Hall element is arranged near the limit of sports record position of slewing equipment assembly.
Described slewing equipment assembly comprises propulsion plant, clamping device and the whirligig that is driven by dynamical system, dynamical system is provided with and is used to second sensor that detects the first sensor of propulsion plant duty and/or be used to detect the whirligig duty, and the signal output part of the first sensor and second sensor is connected with data handling system.
Described dynamical system adopts hydraulic power, and propulsion plant is connected on the hydraulic power unit by different fluid pressure lines with whirligig, and the described first sensor and second sensor are the pressure sensor that is separately positioned on the corresponding fluid pressure line.
Described dynamical system adopts electric power, and dynamical system comprises the access cable that links to each other with whirligig with propulsion plant, and the described first sensor and second sensor are to be arranged on current sensor that is used for sensed current signal and/or the power sensor that inserts on the cable.
The magnet that magnetic induction sensor is set on the utility model rigs against outburst and uses with the magnetic induction sensor corresponding matching, in magnetic induction sensor and the magnet one of them is arranged on the slewing equipment assembly, move reciprocatingly with the slewing equipment assembly, another one is installed on the gadder or is installed on the support that is independent of outside the gadder, and magnetic induction sensor and magnet are used.When slewing equipment assembly drive Hall element or magnet move reciprocatingly, when magnet enters in the Hall element working range, the signal output part of Hall element sends count signal to counting circuit, realization is to the counting of the reciprocating motion number of times of slewing equipment assembly, because drilling rod all adopts the standard drilling rod of equal length, and a drilling rod is once squeezed in the reciprocating motion of slewing equipment assembly, therefore the full-length that measured slewing equipment reciprocating motion number of times be multiply by drilling rod can draw the degree of depth of boring, thereby realizes the accurate measurement to hole depth.The utility model is simple in structure, convenient and practical, because employing heed contacted measure, its long service life, safe, fault rate is low, in boring, realize detection, avoided having guaranteed mine safety production owing to the bending owing to drilling rod in landslide of holing or the boring procedure causes hole deviation can't detect the difficult problem of hole depth after boring to hole depth.
Description of drawings
Fig. 1 is the structural representation of embodiment 1 in the utility model;
Fig. 2 is the structural representation of embodiment 2 in the utility model.
The specific embodiment
Embodiment 1:
As shown in Figure 1, rigs against outburst, comprise gadder 2, be provided with base 1 in the bottom of gadder, on gadder 2, be horizontally disposed with guide rail 3, slidable fit has slewing equipment assembly 6 on guide rail 3, slewing equipment assembly 6 is provided with magnet 12, near the limit of sports record position of slewing equipment assembly, be installed with magnetic induction sensor 11 on the gadder 2, in this specific embodiment, magnetic induction sensor adopts Hall element 11, signal output part at Hall element is connected with counting circuit by transmission line, when the slewing equipment assembly that magnet is installed entered the Hall element working range, Hall element sent count signal to counting circuit, finished this counting to the slewing equipment assembly.
Gadder is provided with the clamper 5 that is used for supports drill rods, in the specific implementation, Hall element can be arranged on the clamper 5, the working region that is installed in the Hall element on the clamper 5 will be able to cover the extreme sport position of the close clamper of slewing equipment assembly.
In the present embodiment, Hall element is arranged near the limit of sports record position of slewing equipment assembly, when specifically implementing, it can also be arranged on the slewing equipment assembly and move back and forth in the stroke.
Hall element in the present embodiment is arranged on the gadder, during concrete enforcement, can support be set outside the gadder being independent of, can be arranged on Hall element on the support this moment, but guarantee that magnet can be used in Hall element when slewing equipment assembly band magnet and moved reciprocatingly.
Slewing equipment assembly 6 comprises and is used to promote the propulsion plant that the slewing equipment assembly moves reciprocatingly, the whirligig that is used to clamp the clamping device of drilling rod 4 and is used to drive the clamping device rotation, described propulsion plant, clamping device and whirligig provide power by dynamical system, dynamical system is provided with the first sensor 8 that is used to detect the propulsion plant duty, the 3rd sensor 10 that is used to detect second sensor 7 of whirligig duty and is used to detect the clamping device duty, first sensor 8, the signal output part of second sensor 7 and the 3rd sensor 10 is connected with data handling system.
Propulsion plant in the present embodiment, clamping device and whirligig can adopt various structures in the prior art, do not repeat them here.
On dynamical system, be provided for detecting the first sensor and second sensor of propulsion plant and whirligig duty in the present embodiment, can play the effect of early warning on the one hand, when running into gas in the process of drilling when outstanding, the suffered resistance of propulsion plant on the slewing equipment assembly and whirligig can increase suddenly, its duty must occur unusually, be reflected on the first sensor and second sensor, after handling through data handling system then, report to the police to the workman, thereby in time take measures; On the other hand when the slewing equipment assembly is in no drilling rod feeding state, the duty of propulsion plant, clamping device and whirligig also can occur unusually, be reflected on first sensor, second sensor and the 3rd sensor, then through data handling system judge in counting circuit, this time count invalid.
The foregoing description medium power system adopts hydraulic power, propulsion plant, clamping device and whirligig link to each other with hydraulic power unit by different fluid pressure lines, and described first sensor, second sensor and the 3rd sensor are the pressure sensor that is used to detect oil pressure in each fluid pressure line setting.
Embodiment 2:
As shown in Figure 2, the difference of itself and embodiment 1 mainly is: the magnetic induction sensor 14 in the present embodiment is arranged on the slewing equipment assembly 6 and moves reciprocatingly with the slewing equipment assembly, and magnet 15 is arranged on the gadder in the vicinity, limit of sports record position of slewing equipment assembly.
During concrete enforcement, magnetic induction sensor 14 can adopt the sensor of other types.
During concrete enforcement, magnet can be arranged on the clamper 5 that is used for supports drill rods.
During concrete enforcement, magnet can be arranged on the support that is independent of outside the gadder.
Present embodiment medium power system adopts electric power, dynamical system comprises the access cable 16 that links to each other with propulsion plant, clamping device and whirligig, described first sensor, second sensor and the 3rd sensor are to be arranged on current sensor that is used for sensed current signal 17 and/or the power sensor that inserts on the cable, and the signal output part of each sensor links to each other with data handling system by transmission line.
Current sensor in the present embodiment and power sensor also can use separately.
Above-mentioned two embodiment the time finish detection to drilling depth in boring, and drilling rod is same to adopt this rig when extracting out, therefore, can adopt the rig described in above-mentioned two embodiment to be implemented in when taking out drilling rod detection to drilling depth.

Claims (5)

1. rigs against outburst, comprise gadder, gadder is provided with the slewing equipment assembly, the slewing equipment assembly moves reciprocatingly on gadder, it is characterized in that: described rigs against outburst is provided with and is used for the slewing equipment assembly is moved back and forth the magnetic induction sensor of time counting number and the magnet that uses with the magnetic induction sensor corresponding matching, in magnetic induction sensor and the magnet one of them is fixedly installed on the slewing equipment assembly and moves reciprocatingly with the slewing equipment assembly, another is installed on the gadder or is installed on the support that is independent of outside the gadder, is connected with counting circuit at the signal output part of magnetic induction sensor by transmission line.
2. rigs against outburst according to claim 1 is characterized in that: described magnetic induction sensor is a Hall element, and this Hall element is arranged near the limit of sports record position of slewing equipment assembly.
3. rigs against outburst according to claim 1 and 2, it is characterized in that: described slewing equipment assembly comprises propulsion plant, clamping device and the whirligig that is driven by dynamical system, dynamical system is provided with and is used to second sensor that detects the first sensor of propulsion plant duty and/or be used to detect the whirligig duty, and the signal output part of the first sensor and second sensor is connected with data handling system.
4. rigs against outburst according to claim 3, it is characterized in that: described dynamical system adopts hydraulic power, propulsion plant is connected on the hydraulic power unit by different fluid pressure lines with whirligig, and the described first sensor and second sensor are the pressure sensor that is separately positioned on the corresponding fluid pressure line.
5. rigs against outburst according to claim 3, it is characterized in that: described dynamical system adopts electric power, dynamical system comprises the access cable that links to each other with whirligig with propulsion plant, and the described first sensor and second sensor are to be arranged on current sensor that is used for sensed current signal and/or the power sensor that inserts on the cable.
CN2010206337622U 2010-11-30 2010-11-30 Outburst prevention drilling rig Expired - Fee Related CN201896578U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN2010206337622U CN201896578U (en) 2010-11-30 2010-11-30 Outburst prevention drilling rig

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN2010206337622U CN201896578U (en) 2010-11-30 2010-11-30 Outburst prevention drilling rig

Publications (1)

Publication Number Publication Date
CN201896578U true CN201896578U (en) 2011-07-13

Family

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN2010206337622U Expired - Fee Related CN201896578U (en) 2010-11-30 2010-11-30 Outburst prevention drilling rig

Country Status (1)

Country Link
CN (1) CN201896578U (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104500038A (en) * 2014-12-31 2015-04-08 郑州光力科技股份有限公司 Drilling rig drilling depth measuring instrument and drilling rig employing measuring instrument
CN104500039A (en) * 2014-12-31 2015-04-08 郑州光力科技股份有限公司 Drill pipe drilling depth measuring device and measuring method by using measuring device

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104500038A (en) * 2014-12-31 2015-04-08 郑州光力科技股份有限公司 Drilling rig drilling depth measuring instrument and drilling rig employing measuring instrument
CN104500039A (en) * 2014-12-31 2015-04-08 郑州光力科技股份有限公司 Drill pipe drilling depth measuring device and measuring method by using measuring device
CN104500038B (en) * 2014-12-31 2017-07-07 郑州光力科技股份有限公司 Rig drill depth calibrator and using the measuring instrument rig

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Legal Events

Date Code Title Description
C14 Grant of patent or utility model
GR01 Patent grant
CP03 Change of name, title or address
CP03 Change of name, title or address

Address after: 450001 Henan city of Zhengzhou province high tech Industrial Development Zone Long Chun Road No. 10

Patentee after: Power Polytron Technologies Inc

Address before: 450001, No. 10, Chun Yang Road, hi tech, Henan, Zhengzhou

Patentee before: Zhengzhou GL Tech Company

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: 20110713

Termination date: 20191130