Percussion borer for forming bores in stone material

Boring or penetrating the earth – Bit or bit element – Bit with leading portion forming smaller diameter initial bore

Reexamination Certificate

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C175S323000, C173S095000

Reexamination Certificate

active

06640914

ABSTRACT:

BACKGROUND OF THE INVENTION
1. Field of the Invention
The present invention relates to a percussion borer for forming bores in a stone material such as concrete and brick. The present invention also relates to a particular type of a percussion drilling or boring anchor.
2. Description of the Prior Art
A chisel, which is driven by a percussion tool, and a borer, which is driven by a rotary-percussion tool, are formed both essentially of a stem provided at one of its end with a working head with hard material inserts and provided at its opposite end with a shank to be received in a chuck of the driving tool. When a percussion drilling anchor is used, at least a portion of the anchor remains in the formed bore, as a lost tool, and is anchored in the stone material.
European Publication EP 716 237 discloses a twist drill, which is guided through a hollow dowel sleeve to form a bore and which remains in the formed bore, being expanded by the dowel sleeve.
U.S. Pat. No. 5,374,140 discloses a hollow drilling dowel, which is used as a to-be-lost tool, is provided with hard material inserts, and is chemically anchored.
U.S. Pat. No. 6,145,601 discloses a chemically anchorable drilling dowel having a drilling head sleeve mounted thereon.
Japanese Publication JP-9048004 discloses a percussion borer for forming polygonal holes in wood and including a hollow polygonal chisel stem having an axial shoulder for guiding a coaxial twist drill which extends through the hollow chisel stem. The removable material is removed through radial openings provided in the chisel stem. In order that the twist drill penetrates in the wood impact-free, the twist drill stem is offset with respect to the shank radially inward in the region of the axial shoulder of the shank, with no contact between the shank and the chisel stem. As a result, the twist drill forms no contact pressure pair with the chisel stem. At that, the twist drill is displaced from the hollow chisel stem only in the direction toward the drilling head.
An object of the present invention is to provide an efficient percussion borer for forming bores in a stone material.
Another object of the present invention is to provide a percussion borer formed as a drilling anchor for a stone material.
SUMMARY OF THE INVENTION
These and other objects of the present invention, which will become apparent hereinafter, are achieved by providing a percussion borer including a chisel stem having a prismatic cross-section, an axial cylindrical through-bore, a chiseling head, and at least one radial opening, a twist drill extending through the cylindrical through-bore, projecting beyond the chiseling head, and having at its end projecting beyond the chiseling head, a drilling head with cutting elements and, at an end thereof opposite the drilling head, a shank, and a stop provided between the shank and the chisel stem, with a drill stem being offset radially inwardly with respect to an outer diameter of the shank so that an impact shoulder, which cooperates with the stop, is formed.
The radial reduction of the twist bore diameter in the region of the axial stop results in formation of an impact shoulder on the end surface of the shank facing toward the drilling head. The impact shoulder forms with the stop, which is provided on the chisel stem, a contact pressure pair which provides for transmission of the impacts or blows, which are applied to the twist drill, to the chisel stem. As a result, the bore is widened in accordance with the prismatic cross-section of the chisel stem, so that a non-circular bore is formed. After the bore is formed, the twist drill is lifted off the chisel stem in the direction opposite the operational direction of the borer.
Advantageously, the axial distance between the chiseling head and a tip of the drilling head is in a range from two times to four times of a diameter of the twist drill and, preferably, amounts to about three times of the twist drill diameter. With such a distance, the residual material in front of the chiseling head causes shearing along the breakdown cone and, thus, optimizes the tool output.
Advantageously, the chiseling head has axial chiseling elements which advantageously are chamfered axially inward. With these chiseling elements, the chiseled material is pushed toward the twist drill and is removed by the helice and through the radial opening, which is formed in the prismatic chisel stem.
Advantageously, the axial chiseling elements are formed of a hard material, e.g., a hard material inserts that cut into the stone material and are wear-resistant.
According to one advantageous embodiment of the present invention, the chisel stem, which is formed as to-be-lost tool, has at its end opposite the chiseling head, load application or mounting means in form of an outer or inner thread. The chiseling stem, after the bore had been formed, remains in the bore, at least partially, as an anchor rod.
Advantageously, the chisel stem has an axial, loosely stacked-up, hollow contact section that forms, together with the axial stop of the twist drill, a substantially wearless rotatable contact pressure pair and, thus, can be re-used. Advantageously, the radial opening is formed in the contact section which simplifies the manufacturing of the chiseling stem for use as a to-be-lost tool.
Advantageously, the chisel stem is provided adjacent to the chiseling head with anchoring means which enhance formlocking or forcelocking connection of the remaining portion of the chisel stem with the bore wall.
Advantageously, the anchoring means is formed as an axially displaceable expansion sleeve provided with axial incisions and arranged in a circumferential groove which is formed in a wall of the chisel stem and has a chamfer expanding radially outwardly toward the chiseling head. As a result, upon application of a tensile load, the chisel stem displacement causes a radial expansion of the expansion sleeve, which frictionally engages the bore wall, so that the expansion sleeve is pressed into the wall, providing for force-and formlocking anchoring of the expansion sleeve.
Advantageously, the expansion sleeve is formed as an expansion cap with an inner axial stop rim and an axial bore. Advantageously, axial chiseling elements are provided on the axial end surface of the expansion cap. The expansion cap can be formed as a separate part of a hard, wear-resistant material. The remaining portion of the stem can be formed of a less tough material.
Alternatively, the anchoring means can be formed as sector-shaped expansion angles that expand radially outwardly toward the chiseling head. During rotation of the chisel stem, the sector-shaped angles form an undercut in the drilled bore, whereby with the expansion angles engaging in the undercut, the chisel stem becomes force-and formlockingly secured in the bore.
Alternatively, the anchoring means can be formed as a plurality of axially limited radial recesses. During chemical anchoring, a liquid material, which solidifies later, is injected into the bore and fills the recesses, providing for formlocking anchoring of the chisel stem.
The novel features of the present invention, which are considered as characteristic for the invention, are set forth in the appended claims. The invention itself, however, both as to its construction and its mode of operation, together with additional advantages and objects thereof, will be best understood from the following detailed description of preferred embodiments, when read with reference to the accompanying drawings.


REFERENCES:
patent: 3891036 (1975-06-01), Schmidt
patent: 4294319 (1981-10-01), Guergen
patent: 4819746 (1989-04-01), Brown et al.
patent: 4867249 (1989-09-01), Adams
patent: 6431294 (2002-08-01), Eddison et al.
patent: 6494275 (2002-12-01), Åsberg et al.
patent: 3102075 (1982-08-01), None
patent: 4020242 (1996-09-01), None
patent: 2350315 (2000-11-01), None
patent: 9424404 (1994-10-01), None
Patent Abstract of Japan JP-09 183 104.
EP Search report EP 02405273 Jul. 24, 2002.

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