This nonprovisional application claims priority under 35 U.S.C. §119(a) to German Patent Application No. 20 2008 001 248.1, which was filed in Germany on Jan. 28, 2008, and which is herein incorporated by reference.
1. Field of the Invention
The invention relates to a ground anchor or rock anchor having an anchor tension member composed of one or more individual elements and having a corrosion-protected anchor head design.
2. Description of the Background Art
Ground and rock anchors are typically used when it is necessary to transmit forces in the region of the anchor head to deeper soil strata. For this purpose, generic anchors have an anchor tension member, which can be composed, for example, of a single bar anchor, which as a general rule has a continuous external thread. Such anchors are known in the form of rock bolts or soil nails, which are either bonded to the wall of the drilled hole over their entire length by the introduction of an injected grout and are subsequently tensioned, or in the type known as post-tensioned anchors are anchored only in the area of the base of the drilled hole and are prestressed at the exposed end. The tensioning or prestressing is accomplished by an anchor nut that is screwed onto the thread of the bar anchor and bears against an anchor plate.
In addition, conventional anchors with an anchor tension member composed of multiple individual elements are known. The individual elements are usually composed of steel wire strands that are anchored to the wall of the drilled hole in the innermost part of the drilled hole. As a rule, such anchors are produced in the form of post-tensioned anchors. Since the wire strands have no external threads, the anchor provides a head block in the vicinity of the anchor head, in which the steel wire strands are frictionally held by anchoring wedges.
Ground and rock anchors are used for both temporary and permanent applications, with permanent use requiring a design that is suitable for protecting against corrosion. In this context, a distinction is drawn between corrosion protection in the region inside the drilled hole, in which passivation is achieved by injecting grout into the drilled hole, and which sometimes is supplemented by plastic sheathing, [and protection outside the hole]. In the region of the anchor head, which is to say outside the drilled hole, corrosion protection is achieved by covering the exposed parts with a corrosion protection compound, such as grease, for example.
From DE 203 14 997 U1 is known a prestressed ground anchor with a plurality of steel wire strands as the anchor tension member, which is introduced into a drilled hole and is anchored at the exposed end in an anchor plate by a head block and wedges. The free ends of the individual steel wire strands project past the head block so that their ends can be gripped by a tensioning jack in the event of the retensioning or removal of individual strands.
In order to ensure corrosion protection in the area of the anchor head, a cap that encloses the head block and the projecting ends of the steel wire strands is provided; the cap is filled with a corrosion protection compound and is fastened to the anchor plate at a circumferential flange using screws.
This type of corrosion protection has been proven in practice. However, it has been noted that the anchor head is also frequently provided with protective paint at a later time, which covers the heads of the fastening screws as well. Especially in the event of a later removal of the cap as part of maintenance or repair work, it is then necessary to remove paint residue from the screw heads, which entails considerable effort.
It is therefore an object of the invention to improve the design of the anchor head, in particular with regard to facilitating the work of installation and removal.
In an embodiment, a closure component is provided for attaching the cap to the rest of the anchor head in an area that is not accessible from outside, for example in the protected area inside the cap. In accordance with the invention, this can be accomplished by a connecting element that extends substantially concentrically around the individual elements and is connected to a support element. At its outer circumference, the connecting element provides a first closure component, which works together with a second closure component on the inner circumference of the cap. In this way, the function of the closure component is not impaired by subsequent external activities such as protective painting or mechanical damage, for example. Moreover, the corrosion protection inside the cap ensures that the closure component is also protected from corrosion, so that their function is maintained over the long term, and removal of the cap is still possible without difficulty after many years.
A further advantage is that the closure component can be activated in the process of putting on the cap, which can be done very quickly and thus provides a considerable reduction in effort as compared to attachment by screws.
Since the closure component is not visible from outside, an inventive anchor is characterized by an improved external appearance, and is less apt to tempt third parties, for whom the closure component is not visible, to inappropriately remove the cap. A cap design that requires the use of special tools to remove the cap can further contribute to preventing misuse. Thus, the center of the cover of the threaded cap can be provided with a recess or a projection having a polygonal cross-section, for example in the shape of a regular square or hexagon, which can be engaged by a tool of suitable shape. Alternatively, the circumference of the threaded cap can have a component which can be brought into frictional engagement with a tool, for example flat or profiled surfaces that are suitable for placement of a tool.
According to an embodiment of the invention, the connecting element can include a circular washer which can be placed on the individual elements, which is clamped between the anchor nut and anchor plate, and whose outer circumference interacts with the closure component on the inner circumference of the cap. In this case the anchor plate serves as a support element. Such an embodiment is advantageous from a production standpoint because a separate part that is only combined with the other parts at the installation of the anchor head is simple and economical to produce.
In an alternative embodiment, the connecting element can be made of a cylindrical projection extending as a single piece from the anchor plate, which provides advantages especially during installation of the anchor, since no separate parts need to be supplied and handled.
The closure component for attaching the cap to the rest of the anchor head arrangement can include a thread, in particular a coarse thread. This makes it possible to attach the cap quickly and securely to the anchor head. In the process, the cap connects to the anchor plate in a frictional and sealing manner over its entire circumference.
An alternative to this is a closure component in the form of a bayonet catch, which can also have a rapid and secure closing mechanism.
The invention is possible for anchors both with and without angle compensation; in the case of angle compensation, the closure element is arranged with the closure component at or on a domed plate. In this case the domed plate serves as the support element. The invention consequently has a very broad field of application.
This is also demonstrated by the inventive embodiment of the invention for anchors with multiple individual elements, such as multistrand anchors, in which the closure component can be arranged on the outer circumference of the head block, or even on the anchor plate itself.
Another embodiment of the invention shows that it is also possible to arrange the closure component on the outer circumference of the cap. In this case, the connecting element can be composed of a circumferential shoulder, which projects monolithically from the top of the circular washer, domed plate, anchor plate, or head block, and on whose inner circumference the complementary closure component run.
Further scope of applicability of the present invention will become apparent from the detailed description given hereinafter. However, it should be understood that the detailed description and specific examples, while indicating preferred embodiments of the invention, are given by way of illustration only, since various changes and modifications within the spirit and scope of the invention will become apparent to those skilled in the art from this detailed description.
The present invention will become more fully understood from the detailed description given hereinbelow and the accompanying drawings which are given by way of illustration only, and thus, are not limitive of the present invention, and wherein:
a, 8b are, in each of these, a half section through an anchor head of an anchor with multiple individual elements.
Visible is a rock anchor 1, which is located inside a drilled hole 2. The anchor tension member of the rock anchor 1 consists of a single individual element in the form of a ribbed steel bar 3 whose longitudinal axis is labeled with reference number 4. In the bottom of the drilled hole 5, the rock anchor 1 is anchored against tension by a wedge anchor 6 screwed onto the steel bar 3.
The exposed end of the rock anchor 1 is composed of the anchor head 7, whose design construction is shown in a larger scale in
An anchor nut 14 is screwed onto the thread of the steel bar 3, thereby bracing the circular washer 12 against the top 11 of the anchor plate 8, so that the circular washer 12 is held in a rotationally fixed manner between the anchor nut 14 and anchor plate 8 on the steel bar 3.
In the drilled hole 2, the rock anchor 1 can be partially or entirely surrounded by a grout in order to ensure corrosion protection within the drilled hole in this way.
It is evident from
If desired, the cap 17 can be further developed by appropriately designing the circumference or cover for positive engagement of a special tool to screw on the cap 17. The coaxial hexagonal projection 37 shown on the outside of the cover 19 of the cap 17 in
The embodiment of the invention shown in
While
To this end, in the embodiments in
The embodiment of the invention shown in
The embodiment of the invention shown in
Another embodiment of the invention is shown in
a and 8b show the implementation of the invention in an anchor 1′ whose anchor tension member has multiple individual elements in the form of steel wire strands 31. Because of the symmetry that is present with respect to the longitudinal axis 4,
Both the anchor 1′ shown in
In order to attach a protective cap 17 to the anchor head 7′, the anchor plate 8 serves as a connecting element. First closure component, for example a thread, extending around the outer circumference of the anchor plate 8 work together with second closure component of complementary design on the inner circumference of the cap 17 for this purpose.
The embodiment in
The invention being thus described, it will be obvious that the same may be varied in many ways. Such variations are not to be regarded as a departure from the spirit and scope of the invention, and all such modifications as would be obvious to one skilled in the art are to be included within the scope of the following claims.
Number | Date | Country | Kind |
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20 2008 001 248 U | Jan 2008 | DE | national |
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Number | Date | Country |
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203 14 997 | Feb 2004 | DE |
Number | Date | Country | |
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20090191005 A1 | Jul 2009 | US |