Tightening device for a refractory plate of sliding closure on the spout of a vessel for molten metal
A clamping device (2″) is provided for a refractory plate (3) of a slide closure at the outlet of a container for metal melt. The plate (3) has two pairs of side faces (10, 11), disposed mirror-symmetrically with respect to its longitudinal center plane (L), at which a clamping element (22″, 23″, 43) disposed in a slider housing (1) engages with its clamping faces. The side faces (10, 11) disposed at one side of the longitudinal center plane (L) form an obtuse angle (γ). Three of the clamping elements are developed as binding fittings (22″, 23″) pivotably supported in the slider housing (1) and the fourth clamping element has a binding jaw (43, 30) displaceable in the direction toward the corresponding side face (10 or 11). Therewith results a simple and optimal bracing of this plate (3) stress-loaded by the high-level heating generated during operation.
The invention relates to a clamping device for a refractory plate of a slide closure at the outlet of a container for metal melt according to the preamble of claim 1 or 7.
A clamping device of this type is disclosed for example in EP B 0 920 361. At two side faces of a refractory slide closure plate, which are disposed mirror-symmetrically relative to the longitudinal center plane of the plate and form with one another an angle, with their clamping faces engage clamping elements pivotably supported in a slider housing. The plate is fastened in with a further pair of side faces, on which either two movable parts of a frame included in the slider housing or two further clamping elements, which are each braced by means of a bracing device. The use of a braceable frame, which can be set into the slider housing, as well as also the use of further clamping elements, which are actuated by means of a common bracing device, is relatively complicated and requires high technical and assembly expenditures, and, in addition, the clamping device requires a great deal of space.
The aim of the present invention is providing a space-saving clamping device simple in terms of production and assembly of the type described in the introduction as well as a slide closure comprising the clamping device, which makes possible a simple and rapid fastening in of the plate, and in which optimum compressive stress conditions are ensured for the plate in the braced and heated operating state.
The aim is attained according to the invention through a clamping device with the characteristics of claim 1 or 7.
The clamping device according to the invention is simple, cost-effective and permits the space-saving installation of the plate in the slide closure.
Further preferred embodiments of the clamping device form the subject matter of the dependent claims.
The invention will be explained in further detail in the following in conjunction with the drawing. Therein depict:
A slide closure at the outlet of a container for metal melt according to
Plate 3 has an elongated symmetric shape; the longitudinal center plane of plate 3 is denoted by L in
The clamping device 2 for detachably securing in the refractory plate 3 comprises four clamping elements 22, 23 disposed in housing 1, and in each instance one displaceable clamping element 22 and one or two clamping elements 23 supported under articulation are provided for each side face pair 10, 11 of plate 3. They are disposed in housing 1 oppositely with respect to the longitudinal center plane L.
In the embodiment depicted in
The bracing proper takes place with the clamping element 22, associated with the shorter side faces 10 forming a greater angle α with the longitudinal center plane L, whose development is evident in
Clamping element 22 includes a base body 26 which, according to
The rotatable support of cam 37 as well as engaging faces for a tool for its rotational displacement are not evident in the drawing (cam 37 can for example comprise a head developed as a four-cornered shaft). To fasten in plate 3, the cam 37 of clamping element 22 according to
To detach plate 3, the cam 37 of clamping element 22 according to
In the same manner the other clamping element 22, opposite with respect to the longitudinal center plane L, is braced or detached, each rotational direction during the positioning of the cam 37 of both clamping elements 22 being opposite.
The embodiment depicted in
The other opposite side face 11 forms the contact face for a clamping element 43 in the form of a binding jaw supported under articulation in housing 1 and displaceable in housing 1 by means of a bracing means (for example a bracing bolt 45) in housing 1. For the articulated support a longitudinal groove 46 is provided, in which a bolt 47, fixed to the housing, is centered approximately free of tolerance. The clamping elements 22″, 23″, 43 consequently automatically adapt during the bracing of plate 3 to the particular effective angle α or β of the corresponding side faces 10 or 11, and consequently ensure the contact over the entire area, which yields a uniform pressure distribution of the clamping force. The durability of plate 3 is thereby maximized.
It is understood that clamping element or binding jaw 43, operationally connected to the bracing means 45, can be disposed at another site, i.e. can be associated with another side face 10 or 11 than that shown in
Instead of the above described binding jaw 43, it would also be entirely possible to utilize, at this site the clamping element 22 (or the clamping element 22′ according to
Claims
1. Clamping device for a refractory plate (3) of a slide closure at the outlet of a container for metal melt, the plate (3) comprising two pairs of side faces (10, 11), disposed mirror-symmetrically with respect to its longitudinal center plane (L), at which engage clamping elements (22″, 23″, 43) disposed in a slider housing (1) with their clamping faces, the side faces (10, 11) disposed at one side of the longitudinal center plane (L) forming an obtuse angle γ, characterized in that three of the clamping elements are developed as binding fittings (22″, 23″) pivotably supported in the slider housing (1), and the fourth clamping element comprises a binding jaw (43; 30) displaceable in the direction of the corresponding side face (10 or 11).
2. Clamping device as claimed in claim 1, characterized in that the binding jaw (43) is supported under articulation in the slider housing (1) and is displaceably guided by a bracing means (45) against the side face (10 or 11).
3. Clamping device as claimed in claim 1, characterized in that the binding jaw (30) is disposed displaceably in a base body (26) fixed to the housing, and for the displacement of the binding jaw (30) a rotationally displaceable cam (37) is provided, whose rotational axis (e) runs transversely to the displacement direction of the binding jaw (30).
4. Clamping device as claimed in claim 3, characterized in that the binding jaw (30) is disposed longitudinally displaceably in a recess (27) of the clamping element base body (26) and includes an opening (40) for the displacement disposed transversely with respect to the displacement direction, at whose inner face the rotationally displaceable cam (37) engages.
5. Clamping device as claimed in claim 4, characterized in that the clamping jaw (30) is disposed with clearance in the recess (27) and is guided slidably via two pins (34) projecting into two longitudinal grooves (35) in a bottom face (28) of the recess (27).
6. Clamping device as claimed in claim 4, characterized in that the inner face of the opening (40) includes a circular portion (40a) cooperating with the eccentric face (38) of the cam (37) and, in a region facing away from a binding jaw clamping face (32), a flat portion (40b), and through the cooperation of an edge (39), terminating the eccentric face (38), with the flat portion (40b) the binding jaw (30) can be displaced away from the side face (10 or 11) of the plate (3).
7. Clamping device for a refractory plate (3) of a slide closure at the outlet of a container for metal melt, the plate (3) being provided with at least two side faces (10 or 11), disposed mirror-symmetrically with respect to its longitudinal center plane (L) and forming an angle (α or β), at which clamping elements (22, 23; 22′, 23′) disposed in a slider housing (1), engage with their clamping faces (24, 32; 24′, 32′), characterized in that a clamping element (22; 22′) comprises a base body (26) fixed to the housing and a binding jaw (30) displaceable in the base body (26) in the direction toward the corresponding side face (10 or 11), and for the displacement of the binding jaw (30) a rotationally displaceable cam (37) is provided, whose rotational axis (e) runs transversely to the displacement direction of the binding jaw (30).
8. Clamping device as claimed in claim 5, characterized in that the inner face of the opening (40) includes a circular portion (40a) cooperating with the eccentric face (38) of the cam (37) and, in a region facing away from a binding jaw clamping face (32), a flat portion (40b), and through the cooperation of an edge (39), terminating the eccentric face (38), with the flat portion (40b) the binding jaw (30) can be displaced away from the side face (10 or 11) of the plate (3).
Type: Application
Filed: Nov 23, 2002
Publication Date: Feb 24, 2005
Inventors: Werner Keller (Steinhausen), Selcuk Tuerkoglu (Steinhausen)
Application Number: 10/496,463