Expanded – threaded – driven – headed – tool-deformed – or locked-thr – Having separate expander means – Including sleeve and distinct tapered expander
Reexamination Certificate
2001-03-14
2002-08-06
Saether, Flemming (Department: 3627)
Expanded, threaded, driven, headed, tool-deformed, or locked-thr
Having separate expander means
Including sleeve and distinct tapered expander
C411S055000
Reexamination Certificate
active
06428256
ABSTRACT:
BACKGROUND OF THE INVENTION
1. Field of the Invention
The present invention relates to a attachment element for an anchor rod including a substantially cylindrical expansion member having an axial bore, and a one-piece expandable member extending, at least partially, into the axial bore of the expansion member without a possibility of disengagement from the expansion member and having at least along a portion of a longitudinal extent thereof, a conical section tapering in a direction opposite to a setting direction of the anchor rod.
2. Description of the Prior Art
The attachment elements of the above-described type become anchored by the expandable member being pulled into the expansion member, with the expansion member being supported either directly or via a spacing sleeve on a thrust bearing support of a bolt element. The expandable member can be connected with the bolt element by a threaded connection.
German Publication DE 197 40 823A1 discloses an attachment element having a substantially cylindrical expansion member provided with an axial bore, and an expandable member having, at least along a portion of its longitudinal extent, a conical section tapering in a direction opposite to the setting direction. The expandable member is formed of a plurality of clamp segments which are held together, with a possibility of radial elastic expansion, by an O-ring and which extend into the axial bore of the expansion member. Upon insertion of an anchor rod, which is provided with an appropriate outer profile, the segments expand radially outwardly, with the O-ring elastically pressing the segments against the outer surface of the outer profile of the anchor rod. Upon application of a tensile load to the anchor rod, the expandable element, which is formed of separate segments, is pulled further into the expansion member. Due to the conicity of the expandable member, which is defined by a cone tapering in direction opposite the setting direction, the expansion member expands radially, upon the expandable member being pulled thereinto.
The drawback of the attachment element which is disclosed in DE 197 40 823A1, consists in that the anchor rod need be precisely centered with respect to the expandable member to insure the radially outward movement of all of separate segments. Otherwise, tilting of the expandable member can occur which makes the insertion of the anchor rod practically impossible which, in turn, make impossible the expansion of the attachment element. In addition, the diameters of the anchor rod and the expandable member should be precisely matched because if the segments are located to close to the center of the expandable member, insertion of the anchor rod can be effected only with much difficulties.
Another drawback of the known attachment element consists in that the anchor rod need be provided with an appropriate outer profile to provide a connection of the anchor rod with the expandable member which is capable to withstand large loads.
An object of the present invention is to provide an attachment element for an anchor rod which would not hinder the insertion of the anchor rod and would insure self-centering of the anchor rod upon insertion.
Another object of the present invention is to provide an attachment element which would not require that the anchor rod be provided with an outer profile for establishing a connection capable of withstanding high loads.
A further object of the present invention is to provide an attachment element which can be simply and economically produced.
SUMMARY OF THE INVENTION
This and other objects of the present invention, which will become apparent hereinafter, are achieved by providing an attachment element of the type described above in which the expandable member has a central bore and at least two slots extending along at least the front portion of the expandable member.
The expandable member is formed as a one-piece member and, because of this, is centered in the expansion member even before the attachment member is set in a bore of a constructional component. This insures insertion of the anchor rod without any problem. The slots, which are provided in the front section of the expandable member, divide the expandable member in that section in a plurality of elastically radially expandable segments, which are expanded radially outwardly upon the insertion of the anchor rod. When a load, which acts in a direction opposite to the setting direction, is applied to the anchor rod, and the anchor rod is pulled out of the bore, the elastically expandable segments are pressed against the outer surface of the anchor rod, whereby frictional forces, which act between the segments and anchor rod, increase. Upon application to the anchor rod of a force acting in a direction opposite the setting direction, the frictional forces acting between the elastically expandable segments and the anchor rod cause pulling of the expandable member into the axial bore of the expansion member, with the conical section of the expandable member expanding the expansion member radially outwardly. Forming the expandable member as a one-piece member simplifies its manufacture and facilitate the assembly of the attachment element.
The bore of the expandable member advantageously tapers in the setting direction. As a result, the radial pressure applied by the elastic segments to the anchor rod increases upon further insertion of the anchor rod as the segments need to perform a longer pivot movement.
Advantageously, the expandable member has at its end facing in a direction opposite to the setting direction, an opening a diameter of which at least correspond to an inner diameter of the axial bore of the expansion member. This insures centering of the anchor rod, upon its insertion, in the axial bore of the expandable member. Preferably, the diameter of the anchor rod is smaller than the diameter of the axial bore of the expandable member, whereby the insertion of the anchor rod can be effected without any hindrance.
Advantageously, the expandable member has, on its outer circumference a shoulder facing in the setting direction and cooperating with a mating shoulder provided on the expansion member which prevents disengagement of the expandable member from the expansion member. The provision of the stop shoulder on the outer circumference of the expandable member also prevents sliding of the expandable member out of the expansion member upon the insertion of the anchor rod. Providing cooperating shoulders on the expansion and expandable members also facilitates the assembly of the attachment member. The region of the axial bore of the expandable member, which adjoins the stop shoulder, can be made conical. This provides for additional expansion of the expansion member in a bore of a constructional component.
The axial bore of the expandable member has, at least along a portion of its length, a shaped profile engagable with a corresponding profile of the anchor rod. This provides, in addition to a forcelocking connection of the expandable member with the anchor rod, a formlocking connection therebetween, such a combination the connection can withstand much higher loads.
Preferably, the expandable member has, in the region of the elongate slots, at least one hinge. This improves swinging characteristic of the expandable segments. In addition, the provision of the hinge permits to obtain a better relationship between the diameter of the axial bore of the expandable member and the length of the elongate slots. The hinge, preferably, is produced by weakening of the material.
Advantageously, the weakening of material is effected by forming an inner groove in the wall of the bore of the expandable member. This insures economical manufacturing of the expandable member. The weakening of material can also be achieved by using a material with a high elasticity.
Preferably, the expansion and expandable member are formed of a plastic material, in particular, by injection molding. This, on one hand, insures an economical manufacturing of the attachment element and, on the other
Hilti Aktiengesellschaft
Saether Flemming
Sidley Austin Brown & Wood LLP
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