JPH0776985A - Excavating tool - Google Patents

Excavating tool

Info

Publication number
JPH0776985A
JPH0776985A JP22265393A JP22265393A JPH0776985A JP H0776985 A JPH0776985 A JP H0776985A JP 22265393 A JP22265393 A JP 22265393A JP 22265393 A JP22265393 A JP 22265393A JP H0776985 A JPH0776985 A JP H0776985A
Authority
JP
Japan
Prior art keywords
bit
tip
block
bits
shape
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.)
Granted
Application number
JP22265393A
Other languages
Japanese (ja)
Other versions
JP3067482B2 (en
Inventor
Akihiro Saburi
明弘 佐分利
Takeshi Hayashi
猛 林
Kazuo Tofun
和夫 藤墳
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.)
Mitsubishi Materials Corp
Original Assignee
Mitsubishi Materials Corp
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 Mitsubishi Materials Corp filed Critical Mitsubishi Materials Corp
Priority to JP5222653A priority Critical patent/JP3067482B2/en
Publication of JPH0776985A publication Critical patent/JPH0776985A/en
Application granted granted Critical
Publication of JP3067482B2 publication Critical patent/JP3067482B2/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

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  • Earth Drilling (AREA)

Abstract

PURPOSE:To excavate a soft bedrock at high speed by planting bits having a small curvature radius of the top end on the outer circumferential part inclined surface of a block to be mounted on circumferential part inclined surface of a block to be mounted on the top end of a device and semi-spherical bits on the inside thereof. CONSTITUTION:First bits 2 having a small curvature radius of the top end are planted on the inclined surface 16d of the outer circumferential part of a block having a number of bits consisting of a wear resisting material such as cemented carbide embedded therein, and semi-spherical second bits 18 on the inside thereof. In the top end part of the first bits 22, various forms such as chisel and conical forms can be selected according to the quality of a bedrock. The impact force of a hammer and the rotating force of a hammer cylinder are received first by the second bits 18, and after they are moderated to some degree, the bedrock is excavated by use of the first bits 22 each having a sharp form on the outside. Thus, the durability of the block 16 is improved, and a soft bedrock can be excavated at high speed.

Description

【発明の詳細な説明】Detailed Description of the Invention

【0001】[0001]

【産業上の利用分野】本発明は、アンカー工事、各種さ
く井工事、基礎杭工事などの土木工事に用いられて地盤
や土砂の掘削に用いられる掘削工具に係わり、特に、ビ
ットが植設されたブロックの耐久性を向上させた掘削工
具に関するものである。
BACKGROUND OF THE INVENTION 1. Field of the Invention The present invention relates to an excavation tool used for excavation of the ground or earth and sand used for civil works such as anchor work, various well works, foundation pile work, etc. The present invention relates to a drilling tool with improved durability of a block.

【0002】[0002]

【従来の技術】上記掘削工具の一従来例として、特願平
3―7199号がある。この掘削工具は、特開昭63―
11789号公報記載の掘削工具の耐久性向上を目的と
して発明されたものであり、その構成の概略は、図6な
いし図8に示すようになっている。
2. Description of the Related Art As a conventional example of the above-mentioned excavating tool, there is Japanese Patent Application No. 3-7199. This drilling tool is disclosed in JP-A-63-
The invention was invented for the purpose of improving the durability of the excavating tool described in Japanese Patent No. 11789, and the outline of the configuration is as shown in FIGS. 6 to 8.

【0003】符号10はハンマの衝撃力およびハンマシ
リダの回転力を受けるデバイスである。このデバイス1
0の中心に対して点対称となる位置には、図7に示すよ
うに一対のブロック軸12がそれぞれ回動自在に挿入さ
れる挿入孔14が設けられている。前記ブロック軸12
の先端には、前記デバイス10とほぼ同径の略半円形状
をなすブロック16が設けられている。このブロック1
6の先端面には、超硬合金などの耐摩耗性材料により形
成されたビット18が多数植設されている。またブロッ
ク16は、それぞれの半径方向に沿う直状端面16aを
互いに対向させて配置されていて、前記デバイス10の
一方向への回転により、デバイス10の外周から所定の
掘削量分突出した拡径状態とされ、また、反対方向への
回転により、円弧部16bがデバイス10の輪郭の内側
に縮まった縮径状態とされるようになっている。
Reference numeral 10 is a device that receives the impact force of the hammer and the rotational force of the hammer cylinder. This device 1
As shown in FIG. 7, insertion holes 14 into which the pair of block shafts 12 are rotatably inserted are provided at positions symmetrical with respect to the center of 0. The block shaft 12
A block 16 having substantially the same diameter as the device 10 and having a substantially semicircular shape is provided at the tip of the. This block 1
A large number of bits 18 made of a wear-resistant material such as cemented carbide are implanted on the tip surface of 6. Further, the blocks 16 are arranged such that the straight end surfaces 16a along the respective radial directions are opposed to each other, and by the rotation of the device 10 in one direction, the diameter expansion protruding from the outer periphery of the device 10 by a predetermined excavation amount. The circular arc portion 16b is contracted to the inside of the contour of the device 10 by rotating in the opposite direction.

【0004】また上記掘削工具においては、ブロック軸
12が挿入される挿入孔14の相互間隔、あるいは挿入
孔14の内径を所定の範囲とすることにより、デバイス
10あるいはブロック軸12の機械的強度を確保するよ
うな配慮がされている。
Further, in the above-described drilling tool, the mechanical strength of the device 10 or the block shaft 12 is set by setting the mutual intervals of the insertion holes 14 into which the block shaft 12 is inserted or the inner diameter of the insertion hole 14 within a predetermined range. Care is taken to ensure it.

【0005】上記ブロック16の外周部には、外方へ向
かうにしたがってデバイス10の軸方向基端側へ傾斜す
る第1の傾斜面16cが形成され、さらにこの第1の傾
斜面16cとは異なる角度で傾斜した第2の傾斜面16
dが形成されていて、この部分には、中心寄りの平坦部
16eよりも高い密度でビット18が植設されている。
なお符号20はハンマーシリンダからの排気を下方およ
び側方へ放出してデバイス10の下面などへの土砂の侵
入を防止するための排気口、符号22はブロック軸14
の凹部14aを係止してデバイス10内に支持するピン
である。
A first inclined surface 16c is formed on the outer peripheral portion of the block 16 so as to incline toward the base end side in the axial direction of the device 10 as it goes outward, and is different from the first inclined surface 16c. Second inclined surface 16 inclined at an angle
d is formed, and the bits 18 are planted in this portion with a higher density than the flat portion 16e near the center.
Reference numeral 20 is an exhaust port for discharging exhaust air from the hammer cylinder downward and sideward to prevent intrusion of earth and sand into the lower surface of the device 10, and reference numeral 22 is a block shaft 14
It is a pin that locks the concave portion 14 a of the above and supports it in the device 10.

【0006】[0006]

【発明が解決しようとする課題】ところで上記掘削工具
は、上記ビット18の先端が半球状であるため、硬い岩
盤を掘削しようとする場合にも、掘削時の衝撃によって
ビット18が破壊され難く、したがって、長い寿命を得
ることができるが、軟質の岩盤を掘削しようとする場合
には、掘削時にビット18に加わるの衝撃が比較的少な
く、ビット18にさほど大きな耐衝撃性が要求されるこ
とはない。したがって、軟質の岩盤の掘削に対しては、
むしろ掘削速度の大きな別の形式の工具への要求があっ
た。
In the excavating tool, since the tip of the bit 18 is hemispherical, even when trying to excavate hard rock, the bit 18 is less likely to be damaged by the impact during excavation. Therefore, it is possible to obtain a long life, but when excavating soft rock, the impact applied to the bit 18 during excavation is relatively small, and the bit 18 is required to have a large impact resistance. Absent. Therefore, for soft rock drilling,
Rather, there was a demand for another type of tool with a high drilling speed.

【0007】本発明は上記事情に鑑みてなされたもの
で、主として軟質の岩盤の掘削に用いられて高い掘削速
度を達成し得る掘削工具を提供することを目的とするも
のである。
The present invention has been made in view of the above circumstances, and an object of the present invention is to provide a drilling tool which is mainly used for drilling soft rock and can achieve a high drilling speed.

【0008】[0008]

【課題を解決するための手段】かかる目的を達成するた
め、請求項1の発明は、ハンマの衝撃力およびハンマシ
リンダの回転力を受けるデバイスの底面に、該デバイス
の中心に対して点対称にそれぞれブロック軸を軸回りに
回転自在に嵌入し、それぞれのブロック軸の先端部に、
前記デバイスの径とほぼ同径の略半円形状をなしかつ先
端面にビットが植設されたブロックをそれぞれの直状端
面を対向させて設け、前記ブロック軸の位置を前記デバ
イスが掘削方向に回転した際に、前記両ブロックのそれ
ぞれ一方の端部が共にデバイスがの外周面より所定の掘
削量分だけ突出し、かつそのブロックの拡径時に両ブロ
ックの直状端面が互いに当接するようにデバイスの中心
から偏心させてなる掘削工具において、前記デバイスの
外周部近傍に植設された第1のビットの先端は、これよ
りも内側に植設された第2のビットの先端より小さな曲
率半径とされたことを特徴とする。請求項2の発明は、
請求項1において、前記デバイスの底面の外周部には、
前記ブロック軸に対して傾斜した面が設けられ、この面
に前記第1のビットが植設されたことを特徴とする。請
求項3の発明は、請求項1または2において、前記第2
のビットの先端部は半球状に形成されたことを特徴とす
る。請求項4の発明は、請求項1ないし請求項3のいず
れかにおいて、前記第1のビットの先端部はチゼル状に
形成されたことを特徴とする。請求項5の発明は、請求
項3において、前記第1のビットの先端部は前記第2の
ビットの先端がなす半球と同径の円錐状に形成されたこ
とを特徴とする。
In order to achieve the above object, the invention of claim 1 is arranged on a bottom surface of a device which receives an impact force of a hammer and a rotational force of a hammer cylinder in a point symmetrical manner with respect to a center of the device. Each block shaft is rotatably fitted around the shaft, and at the tip of each block shaft,
Blocks each having a substantially semicircular shape with a diameter substantially equal to that of the device and having a bit planted on the tip surface are provided with their respective straight end surfaces facing each other, and the position of the block axis is set in the excavating direction by the device. When rotated, one end of each of the two blocks is projected from the outer peripheral surface of the device by a predetermined amount of excavation, and the straight end surfaces of both blocks contact each other when the block is expanded. In the drilling tool eccentric from the center of the device, the tip of the first bit implanted near the outer periphery of the device has a smaller radius of curvature than the tip of the second bit implanted inside the device. It is characterized by being done. The invention of claim 2 is
The outer peripheral portion of the bottom surface of the device according to claim 1,
A surface inclined with respect to the block axis is provided, and the first bit is planted on this surface. The invention of claim 3 is the same as the invention of claim 1 or 2,
The tip of the bit is characterized by being formed in a hemispherical shape. According to a fourth aspect of the present invention, in any one of the first to third aspects, the tip end portion of the first bit is formed in a chisel shape. According to a fifth aspect of the present invention, in the third aspect, the tip end portion of the first bit is formed in a conical shape having the same diameter as the hemisphere formed by the tip end of the second bit.

【0009】[0009]

【作用】上記構成によれば、外周近くのビットが内側よ
りするどい形状となるので、軟質の岩盤に有効に作用し
て能率的に掘削を行うことができる。
According to the above construction, the bit near the outer circumference has a sharper shape than the inner one, so that it can effectively act on the soft rock mass and excavate efficiently.

【0010】[0010]

【実施例】図1および図2は本発明の第1実施例を示す
ものである。この実施例にあっては、ブロック16の外
周部の第1傾斜面16cおよび第2傾斜面16dに設け
られたビット22の先端にチゼル状の切刃24が設けら
れている。また、これらのビット22より内側のビット
18は、従来例と同様に、先端が半球状に形成されてい
る。
1 and 2 show a first embodiment of the present invention. In this embodiment, a chisel-shaped cutting blade 24 is provided at the tip of the bit 22 provided on the first inclined surface 16c and the second inclined surface 16d on the outer peripheral portion of the block 16. Further, the bit 18 inside the bit 22 has a hemispherical tip, as in the conventional example.

【0011】上記ビット22は、図2に示すように、ブ
ロック16の中に埋設される円柱状部26と、その上部
に設けられたチゼル状の切刃24とから構成されてい
る。前記チゼル状の切刃24は耐欠損性を考慮してわず
かな丸みを持たせてあり、したがって、ビット22の先
端は、内周側のビット18の先端よりも小さな曲率半径
に設定されることとなる。
As shown in FIG. 2, the bit 22 comprises a columnar portion 26 embedded in the block 16 and a chisel-shaped cutting blade 24 provided on the upper portion thereof. The chisel-shaped cutting edge 24 is slightly rounded in consideration of fracture resistance, and therefore the tip of the bit 22 is set to have a smaller radius of curvature than the tip of the bit 18 on the inner peripheral side. Becomes

【0012】したがって、この第1実施例にあっては、
外周部のビット22の曲率半径が内周部のビット18よ
り小さいことから、ハンマーシリンダからの衝撃によっ
て軟質の岩盤に有効に作用し、これを容易に割ることが
でき、したがって高い掘削速度を得ることができる。ま
た、ブロック軸10の先端に生じる曲げモーメントに最
も大きな影響のある外周部のビットにおいて岩盤を効率
よく割ることができるから、掘削に必要な力が小さくて
済み、ブロック軸10の先端に生じる曲げモーメントが
小さくなる。したがって前記曲げモーメントによってブ
ロック軸10の先端が曲げられることよりデバイス16
の挿入孔14が損傷を受けることが少ない。また、内側
の曲率半径の大きな球面状のビット18が岩盤に最初に
衝突して、ある程度衝撃が緩和された後に外側の曲率半
径の小さな(するどい形状の)ビット22が衝撃を受け
ることになるから、外側のビット22が保護される。
Therefore, in the first embodiment,
Since the radius of curvature of the bit 22 on the outer circumference is smaller than that of the bit 18 on the inner circumference, the impact from the hammer cylinder effectively acts on the soft rock mass, which can be easily cracked, thus obtaining a high excavation speed. be able to. In addition, since the rock mass can be efficiently cracked at the outer peripheral bit, which has the greatest effect on the bending moment generated at the tip of the block shaft 10, the force required for excavation is small, and the bending generated at the tip of the block shaft 10 is small. The moment becomes smaller. Therefore, since the tip of the block shaft 10 is bent by the bending moment, the device 16
The insertion hole 14 is less likely to be damaged. In addition, since the spherical bit 18 having a large radius of curvature on the inner side first collides with the bedrock and the impact is moderated to some extent, the bit 22 having a small radius (curved shape) on the outside is impacted. , The outer bit 22 is protected.

【0013】図3は、本発明の第2実施例に適用される
ビットを示している。このビット26の先端は円錐状を
なし、かかる形状とされることによって、先端部の曲率
半径が、内周部のビット18より小さくなり、したがっ
て、軟質の岩盤に対して有効に作用して掘削速度を高め
ることができる。
FIG. 3 shows bits applied to the second embodiment of the present invention. The tip of this bit 26 has a conical shape, and by having such a shape, the radius of curvature of the tip is smaller than that of the bit 18 of the inner peripheral portion, and therefore, it effectively acts on soft rock mass and excavates. The speed can be increased.

【0014】図4は、本発明の第3実施例に適用される
ビットを示している。このビット28の先端は2段に頂
角が変えられた円錐状をなし、かかる形状とされること
によって、先端部の曲率半径が、内周部のビット18よ
り小さくなっている。また、かかる2段の円錐状の形状
を採用することにより、先端部分を掘削効率および寿命
を考慮した最適の角度として、基端部分を、ビット28
の突出量や自身の折れ防止を考慮した最適な寸法とする
ことができる。
FIG. 4 shows bits applied to the third embodiment of the present invention. The tip of the bit 28 has a conical shape in which the apex angle is changed in two steps, and by having such a shape, the radius of curvature of the tip is smaller than that of the bit 18 in the inner peripheral portion. Further, by adopting such a two-step conical shape, the tip end portion is set to an optimum angle in consideration of excavation efficiency and life, and the base end portion is set to the bit 28.
It is possible to set the optimum dimension in consideration of the amount of protrusion of and the prevention of bending of itself.

【0015】図5は本発明の第4実施例に適用されるビ
ットを示している。このビット30は弾丸状をなし、か
かる形状とされることによって、先端部の曲率半径が、
内周部のビット18より小さくされている。
FIG. 5 shows the bits applied to the fourth embodiment of the present invention. This bit 30 has a bullet shape, and by having such a shape, the radius of curvature of the tip portion is
It is smaller than the bit 18 in the inner peripheral portion.

【0016】なおビットの具体的形状は上記各実施例に
限定されるものではなく、内周側のビットより先端の曲
率半径が小さい形状を採用している限り軟質の岩盤に有
効に作用して掘削速度を高めることができる。
The concrete shape of the bit is not limited to the above-mentioned respective embodiments, and it effectively works on soft rock as long as the tip has a radius of curvature smaller than that of the bit on the inner peripheral side. The excavation speed can be increased.

【0017】[0017]

【発明の効果】以上の説明で明らかなように、ハンマの
衝撃力およびハンマシリンダの回転力を受けるデバイス
の底面に点対称にそれぞれブロック軸を設け、それぞれ
のブロック軸の先端部に、前記デバイスの径とほぼ同径
の略半円形状をなしかつ先端面にビットが植設されたブ
ロックをそれぞれの直状端面を対向させて設けた掘削工
具において、前記デバイスの外周部近傍に植設された第
1のビットの先端を、これよりも内側に植設された第2
のビットの先端より小さな曲率半径としたものであるか
ら、外周側のビットの先端は、内周側のビットより岩盤
を砕く作用が大きく、したがって、打撃力を岩盤に有効
に作用させて良好な掘削速度を得ることができる。
As is apparent from the above description, the block shafts are provided point-symmetrically on the bottom surface of the device that receives the impact force of the hammer and the rotational force of the hammer cylinder, and the device is provided at the tip of each block shaft. In a drilling tool in which a block having a substantially semi-circular shape with a diameter substantially equal to that of the device and having a bit planted on the tip surface is provided with the respective straight end surfaces facing each other, the block is planted near the outer peripheral portion of the device. The tip of the first bit is the second
Since the radius of curvature is smaller than the tip of the bit, the tip of the bit on the outer circumference side has a greater effect of crushing the rock mass than the bit on the inner circumference side. The drilling speed can be obtained.

【図面の簡単な説明】[Brief description of drawings]

【図1】本発明の掘削工具の第1実施例の斜視図であ
る。
FIG. 1 is a perspective view of a first embodiment of a drilling tool of the present invention.

【図2】図1の掘削工具のビットの斜視図である。2 is a perspective view of a bit of the drilling tool of FIG. 1. FIG.

【図3】本発明の第2実施例にかかるビットの斜視図で
ある。
FIG. 3 is a perspective view of a bit according to a second embodiment of the present invention.

【図4】本発明の第3実施例にかかるビットの斜視図で
ある。
FIG. 4 is a perspective view of a bit according to a third embodiment of the present invention.

【図5】本発明の第4実施例にかかるビットの斜視図で
ある。
FIG. 5 is a perspective view of a bit according to a fourth embodiment of the present invention.

【図6】従来技術の掘削工具の斜視図である。FIG. 6 is a perspective view of a prior art drilling tool.

【図7】従来技術の掘削工具の底面図である。FIG. 7 is a bottom view of a prior art drilling tool.

【図8】従来技術の掘削工具の縦断面図である。FIG. 8 is a vertical sectional view of a conventional drilling tool.

【符号の説明】[Explanation of symbols]

10 デバイス 12 ブロック軸 14
挿入孔 16 ブロック 18 ビット 22
ビット 26 ビット 28 ビット 30
ビット
10 device 12 block axis 14
Insertion hole 16 blocks 18 bits 22
Bit 26 bit 28 bit 30
bit

フロントページの続き (72)発明者 藤墳 和夫 岐阜県安八郡神戸町大字横井字中新田1528 番地 三菱マテリアル株式会社岐阜製作所 内Front Page Continuation (72) Inventor Kazuo Fujimazu 1528, Nakashinden, Yokoi, Kobe, Anpachi-gun, Gifu Prefecture Mitsubishi Materials Corporation Gifu Manufacturing

Claims (5)

【特許請求の範囲】[Claims] 【請求項1】 ハンマの衝撃力およびハンマシリンダの
回転力を受けるデバイスの底面に、該デバイスの中心に
対して点対称にそれぞれブロック軸を軸回りに回転自在
に嵌入し、それぞれのブロック軸の先端部に、前記デバ
イスの径とほぼ同径の略半円形状をなしかつ先端面にビ
ットが植設されたブロックをそれぞれの直状端面を対向
させて設け、前記ブロック軸の位置を前記デバイスが掘
削方向に回転した際に、前記両ブロックのそれぞれ一方
の端部が共にデバイスがの外周面より所定の掘削量分だ
け突出し、かつそのブロックの拡径時に両ブロックの直
状端面が互いに当接するようにデバイスの中心から偏心
させてなる掘削工具において、 前記デバイスの外周部近傍に植設された第1のビットの
先端は、これよりも内側に植設された第2のビットの先
端より小さな曲率半径とされたことを特徴とする掘削工
具。
1. A block shaft is rotatably fitted around the bottom of a device that receives the impact force of a hammer and the rotational force of a hammer cylinder in a point-symmetrical manner with respect to the center of the device, and the block shaft is rotated about its axis. Blocks each having a substantially semicircular shape having a diameter substantially equal to the diameter of the device and having bits planted on the tip surfaces are provided at their tip portions so that their respective straight end surfaces face each other, and the position of the block shaft is set to the device. When the block rotates in the excavation direction, one end of each of the two blocks protrudes from the outer peripheral surface of the device by a predetermined excavation amount, and the straight end surfaces of both blocks contact each other when the block is expanded. In a drilling tool that is eccentric from the center of the device so as to contact, the tip of the first bit implanted near the outer peripheral portion of the device has a second tip implanted inside thereof. Drilling tool, characterized in that it is a small radius of curvature than the tip of the bit.
【請求項2】 前記デバイスの底面の外周部には、前記
ブロック軸に対して傾斜した面が設けられ、この面に前
記第1のビットが植設されたことを特徴とする請求項1
の掘削工具。
2. The outer peripheral portion of the bottom surface of the device is provided with a surface inclined with respect to the block axis, and the first bit is implanted in this surface.
Drilling tools.
【請求項3】 前記第2のビットの先端部は半球状に形
成されたことを特徴とする請求項1または2のいずれか
に記載の掘削工具。
3. The drilling tool according to claim 1, wherein a tip portion of the second bit is formed in a hemispherical shape.
【請求項4】 前記第1のビットの先端部はチゼル状に
形成されたことを特徴とする請求項1ないし3のいずれ
かに記載の掘削工具。
4. The excavating tool according to claim 1, wherein a tip end portion of the first bit is formed in a chisel shape.
【請求項5】 前記第1のビットの先端部は前記第2の
ビットの先端がなす半球と同径の円錐状に形成されたこ
とを特徴とする請求項3の掘削工具。
5. The excavating tool according to claim 3, wherein the tip portion of the first bit is formed in a conical shape having the same diameter as the hemisphere formed by the tip of the second bit.
JP5222653A 1993-09-07 1993-09-07 Drilling tool Expired - Fee Related JP3067482B2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP5222653A JP3067482B2 (en) 1993-09-07 1993-09-07 Drilling tool

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP5222653A JP3067482B2 (en) 1993-09-07 1993-09-07 Drilling tool

Publications (2)

Publication Number Publication Date
JPH0776985A true JPH0776985A (en) 1995-03-20
JP3067482B2 JP3067482B2 (en) 2000-07-17

Family

ID=16785828

Family Applications (1)

Application Number Title Priority Date Filing Date
JP5222653A Expired - Fee Related JP3067482B2 (en) 1993-09-07 1993-09-07 Drilling tool

Country Status (1)

Country Link
JP (1) JP3067482B2 (en)

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2001234686A (en) * 2000-02-22 2001-08-31 Koken Boring Mach Co Ltd Wire line core sampling device for rotary percussion drill
CN1321255C (en) * 2005-03-11 2007-06-13 吉林大学 Bottom hole hammer reverse circulation follow pipe drill
KR101246305B1 (en) * 2010-09-08 2013-03-21 이문수 Direct boring bit

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2001234686A (en) * 2000-02-22 2001-08-31 Koken Boring Mach Co Ltd Wire line core sampling device for rotary percussion drill
CN1321255C (en) * 2005-03-11 2007-06-13 吉林大学 Bottom hole hammer reverse circulation follow pipe drill
KR101246305B1 (en) * 2010-09-08 2013-03-21 이문수 Direct boring bit

Also Published As

Publication number Publication date
JP3067482B2 (en) 2000-07-17

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