The present invention relates to an excavator, and more particularly to an excavator in which a first rod is assembled with a second rod that is previously inserted into a hole perforated by a hammer by simply aligning the first rod with the second rod.
In general, an excavator is used to excavate deep holes into the ground for purposes of boring, soil testing or development of underground water.
A conventional excavator is disclosed in Korean Patent No. 624233.
The disclosed excavator comprises a main body having a driving device such as an engine, a leader supported by the main body, and a head sliding along the leader and generating an elevational force or a rotational force by a driving device provided in the main body.
In addition, the excavator comprises a rod assembled with the head and inserted into a deep hole while elevating or rotataing, and an excavating unit installed at a front end of the rod and perforating the deep hole into the ground while elevating or rotataing.
The excavating unit includes a beat striking and excavating the ground and a hammer operated by a hydraulic pressure to apply a striking force to the beat. The hydraulic pressure can be transferred to the excavating unit by means of a separate hydraulic line installed at the rod.
The excavator is configured to excavate the ground to a predetermined depth such that the beat of the excavating unit rotates or strikes the ground. As the excavating unit excavates the ground, the excavating unit and the rod are inserted into the ground. If the rod is inserted into the ground to the predetermined depth, a new rod is assembled with the rod previously inserted into the ground and the new rod and the previously inserted rod are both inserted into the ground.
In other words, multiple rods are coupled with each other and the coupled rods are inserted into the hole perforated by the excavating unit.
In order to couple an additional rod to a rod that is previously inserted the perforated hole, a rod clamp for supporting the previously inserted rod is provided at an end of the leader.
The aforementioned excavator performs a new rod assembling process in the following manner.
First, the head is separated from the rod previously inserted into the ground and the new rod is connected to the head. Then, the new rod is assembled with the previously inserted rod.
However, since the rod is several meters long, the new rod assembled with the head may severely vibrate. The vibrating of the new rod makes it difficult to align a assembled portion of the new rod with a assembled portion of the previously inserted rod, thereby resulting in inconvenience in connecting the rods to each other.
To solve the above problems, it is an object of the present invention to provide an excavator in which a new rod assembled with a previously inserted rod can be supported to a head without vibration.
According to an aspect of the present invention, there is provided an excavator comprising a body, a leader supported by the body, a head sliding along the leader, a first rod assembled with the head to then be elevated or rotated by the head, a rod clamp installed at a front end of the leader and clamping a second rod inserted into the ground, and a position fixture sliding along the leader by means of the head and fixing the position of the first rod when connecting the first rod to the second rod.
The position fixture includes a base member slidably installed on the leader, a support plate installed at one side of the base member and having a support groove on its top surface such that the first rod is position-supported, and a locking unit installed at the other side of the base member and allowing the base member to elevate by being interfered when the head elevates.
Hereinafter, an exemplary embodiment of the present invention will be described with reference to the accompanying drawings.
Referring to
A rod clamp 70 is installed at an end of the leader 20 close to the ground and clamps the rod 40.
The head 30 includes a frame 31 and the driving device 32. The frame slides along the leader 20, and the driving device 32 is installed on the frame 31 and generates a rotary force.
The position fixture 60 is a device used for fixing a position of a new rod when the new rod is assembled with a previously installed rod in order to extend a length of the rod assembled with the excavating unit 50. An exemplary embodiment of the position fixture 60 is shown in
In the following, for brevity of explanation, a rod that is assembled with the excavating unit 50 and is previously inserted into the ground is to be referred to as a second rod 42, and a new rod that is to be assembled with the second rod 42 is to be referred to as a first rod 41.
Referring to
Referring to
The leader 20 has a sliding rail 21 allowing the base member 61 to slide.
The base member 61 has first support rollers 61a contacting the sliding rail 21 to facilitate a sliding operation.
The first support rollers 61a are installed at various locations of the base member 61 to closely contact to top and lateral surfaces of the sliding rail 21.
The support plate 62 has a support groove 62a having a predetermined depth formed from the edge of the support plate 62 so that the first rod 41 is inserted into the support groove 62a to then be fixed.
The support groove 62a has a width so large that the first rod 41 is inserted thereinto.
Here, the support groove 62a inwardly slopes such that the first rod 41 is inserted thereinto to then be fixed without vibration. That is to say, the support groove 62a is formed in a āVā shape in which its width is gradually tapered.
The support plate 62 and the support groove 62a are designed to have appropriate dimensions such that the first rod 41 inserted into the support groove 62a and the second rod 42 are coaxially aligned.
The locking unit 63 includes an extension member 63a and a locking bracket 63b. The extension member 63a is connected to an end of the base member 61 and extends a length of the base member 61. The locking bracket 63b connected to an end of the extension member 63a so as to protrude thereat and is locked on the frame 31 when the head 30 is elevated.
The extension member 63a is positioned between the frame 31 of the head 30 and the leader 20 and is formed to a length long enough to expose both ends thereof to opposite sides of the frame 31 of the head 30. The extension member 63a has a second support roller 80 installed to facilitate a sliding operation.
The locking bracket 63b is installed at the end of the extension member 63a, i.e., at a location opposite to an end to which the base member 61 is connected. Thus, the base member 61 and the locking bracket 63b are positioned at both sides of the extension member 63a exposed to opposite sides of the frame 31 of the head 30.
Referring to
In the aforementioned excavator according to the exemplary embodiment of the present invention, the operation of the position fixture in the course of assembling the first rod 41 with the second rod 42 for the purpose of extending the rod length will now be described.
When the excavating unit 50 excavates the ground to a predetermined depth, the excavating unit 50 and the second rod 42 connected to the excavating unit 50 are inserted into the ground, and the head 30 is lowered into the ground by a excavating length along the leader 20.
Here, the rod length is extended by additionally connecting the first rod 41 to the second rod 42.
Referring to
If the frame 31 is elevated by an appropriate length, the first rod 41 is connected to the driving device 32.
The first rod 41 connected to the driving device 32 of the head 30 is laterally inserted into the support groove 62a of the support plate 62 to fix the position of the first rod 41. Accordingly, the first rod 41 is fixed without vibration.
The first rod 41 inserted into the support groove 62a is coaxially aligned with the second rod 42. As described above, in a state in which the position of the first rod 41 is fixed to the support groove 62a of the support plate 62, the frame 31 of the head 30 is lowered and the first rod 41 is accurately assembled with the second rod 42.
After assembling the first rod 41 and the second rod 42, the ground is perforated by the excavating unit 50 and the first rod 41 is inserted into the ground. Here, the frame 31 of the head 30 is lowered.
When the frame 31 of the head 30 is lowered, the position fixture 60 is lowered until the base member 61 is brought into contact with the rod clamp 70 due to its own weight.
The frame 31 of the head 30 is further lowered even after the position fixture 60 comes to a halt, which is preceded by the base member 61 contacting the rod clamp 70.
As described above, according to the illustrated exemplary embodiment of the present invention, the vibration of the first rod 41, which is one of problems with the prior art, can be prevented when assembling the first rod 41 and the second rod 42, using the support groove 62a of the support plate 62 of the position fixture 60, thereby facilitating the assembling of the first rod 41 and the second rod 42.
The excavator usually excavates the ground to a depth of approximately 2000 m. In this regard, since general rods are approximately 6 m long, multiple rods are connected to each other to lengthen the rods and the excavating work is performed. As described above, since the rods are simply assembled to each other, the excavator according to the present invention can facilitate the excavating work of the ground.
While the present invention has been particularly shown and described with reference to exemplary embodiments thereof, it will be understood by those of ordinary skill in the art that various changes in form and details may be made therein without departing from the spirit and scope of the present invention as defined by the following claims.
It is therefore desired that the present embodiments be considered in all respects as illustrative and not restrictive, reference being made to the appended claims rather than the foregoing description to indicate the scope of the invention.
According to the present invention, since a new rod can be assembled with a rod that is previously inserted into the ground and clamped by a rod clamp by means of a position fixture without vibration, a new rod assembling work can be easily performed in excavating deep holes into the ground for purposes of boring, soil testing or development of underground water.
Number | Date | Country | Kind |
---|---|---|---|
10-2007-0126452 | Dec 2007 | KR | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
---|---|---|---|---|
PCT/KR2008/007258 | 12/8/2008 | WO | 00 | 10/26/2010 |
Publishing Document | Publishing Date | Country | Kind |
---|---|---|---|
WO2009/072855 | 6/11/2009 | WO | A |
Number | Name | Date | Kind |
---|---|---|---|
2690847 | Crookston | Oct 1954 | A |
3158212 | Fanshawe et al. | Nov 1964 | A |
3158213 | O'Neill et al. | Nov 1964 | A |
3194313 | Fanshawe | Jul 1965 | A |
3464507 | Smith et al. | Sep 1969 | A |
3741322 | Wolters | Jun 1973 | A |
4440536 | Scaggs | Apr 1984 | A |
4605077 | Boyadjieff | Aug 1986 | A |
5595248 | Denny | Jan 1997 | A |
6227311 | Osadchuk | May 2001 | B1 |
7350587 | Springett et al. | Apr 2008 | B2 |
7743834 | Bouligny | Jun 2010 | B2 |
7814994 | Franzen | Oct 2010 | B2 |
20020043403 | Juhasz et al. | Apr 2002 | A1 |
20020170720 | Haugen | Nov 2002 | A1 |
20040069500 | Haugen | Apr 2004 | A1 |
20060113075 | Springett et al. | Jun 2006 | A1 |
20060113084 | Springett et al. | Jun 2006 | A1 |
20060113087 | Springett et al. | Jun 2006 | A1 |
20060278400 | Bouligny | Dec 2006 | A1 |
20070017703 | Belik | Jan 2007 | A1 |
20070095524 | Lesko | May 2007 | A1 |
20070251701 | Jahn et al. | Nov 2007 | A1 |
Number | Date | Country |
---|---|---|
2001-220985 | Aug 2001 | JP |
2007-132090 | May 2007 | JP |
Number | Date | Country | |
---|---|---|---|
20110048807 A1 | Mar 2011 | US |