FIRE PROTECTION SECURING DEVICE FOR SECURING A DOOR ACTUATOR
20230287723 ยท 2023-09-14
Inventors
- Thomas Salutzki (Ennepetal, DE)
- Thomas PABST (Ennepetal, DE)
- Alexander Hellwig (Ennepetal, DE)
- Volker Bienek (Ennepetal, DE)
Cpc classification
E05F15/49
FIXED CONSTRUCTIONS
International classification
Abstract
A fire protection securing apparatus for securing a door actuator includes a retaining plate, designed for being secured to an assembly surface, in particular door, frame or wall, wherein, perpendicular to the retaining plate, an assembly axis is defined. The fire protection securing apparatus further includes an assembly plate which is secured to the retaining plate and which is designed for receiving the door actuator, and at least one closed reaction chamber arranged between the retaining plate and the assembly plate. The apparatus also includes a drive element of thermally intumescent material which is arranged in the reaction chamber and which is designed to push the assembly plate away from the retaining plate upon thermal activation.
Claims
1. A fire protection securing apparatus for securing a door actuator, the fire protection securing apparatus comprising: a retaining plate designed for being secured to an assembly surface, in particular door, frame or wall, wherein, perpendicular to the retaining plate, an assembly axis is defined, an assembly plate which is secured to the retaining plate designed for receiving the door actuator, at least one closed reaction chamber arranged between retaining plate and assembly plate, and a drive element of thermally intumescent material, which is arranged in the reaction chamber and which is designed to push the assembly plate away from the retaining plate upon thermal activation.
2. The fire protection securing apparatus according to claim 1, wherein the reaction chamber is formed by a pocket in the assembly plate open towards the retaining plate and/or by a pocket in the retaining plate open towards the assembly plate.
3. The fire protection securing apparatus according to claim 1, wherein the reaction chamber has a depth parallel to the assembly axis, wherein at least 50% of the depth, of the reaction chamber is positioned in the assembly plate.
4. The fire protection securing apparatus according to claim 1, wherein the retaining plate and the assembly plate bear directly against one another.
5. The fire protection securing apparatus according to claim 1, wherein the retaining plate and the assembly plate are connected to one another by at least one connecting element.
6. The fire protection securing apparatus according to claim 1, wherein the retaining plate has first securing points, for screwing to the assembly surface.
7. The fire protection securing apparatus according to claim 6, wherein the assembly plate has recesses, through which the first securing points of the retaining plate are accessible.
8. The fire protection securing apparatus according to claim 1, wherein the assembly plate has second securing points, for screwing on the door actuator.
9. The fire protection securing apparatus according to claim 1, wherein the retaining plate extends perpendicular to the assembly axis over a first cross-sectional area and wherein the assembly plate extends perpendicular to the assembly axis over a second cross-sectional area, wherein a ratio of the first cross-sectional area to the second cross-sectional area is between 0.7 and 1.3.
10. The fire protection securing apparatus according to claim 1, wherein a thickness of the retaining plate defined parallel to the assembly axis is, at the thickest point, between 1 mm and 20 mm, and/or wherein a thickness of the assembly plate defined parallel to the assembly axis is, at the thickest point, between 1 mm and 30 mm.
11. The fire protection securing apparatus according to claim 1, wherein the drive element comprises only the intumescent material, and only the intumescent material is arranged in the reaction chamber.
12. The fire protection securing apparatus according to claim 1, wherein the drive element extends over the entire cross-sectional area of the reaction chamber defined perpendicular to the assembly axis.
13. An arrangement comprising a door actuator, and a fire protection securing apparatus comprising a retaining plate designed for being secured to an assembly surface, wherein, perpendicular to the retaining plate, an assembly axis is defined, an assembly plate which is secured to the retaining plate designed for receiving the door actuator, at least one closed reaction chamber arranged between retaining plate and assembly plate, and a drive element of thermally intumescent material, which is arranged in the reaction chamber and which is designed to push the assembly plate away from the retaining plate upon thermal activation, wherein the door actuator is designed to be arranged on the assembly plate.
14. The arrangement according to claim 13, comprising a covering, which covers the door actuator and which is designed for being secured directly to the assembly plate.
15. A door arrangement, comprising an assembly surface, and an arrangement according to claim 13, wherein the retaining plate is designed for being securing to the assembly surface.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0043] The disclosure will now be explained further on the basis of an exemplary embodiment, in which is shown:
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[0045]
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DETAILED DESCRIPTION OF THE DRAWINGS
[0051] An exemplary embodiment of the disclosure is explained below. Unless otherwise mentioned in detail, reference is always made to all figures.
[0052]
[0053] An arrangement 100 is part of the door arrangement 200. The arrangement 100 in turn comprises a door actuator 101 and a covering 104. The door actuator 101 without covering 104 is illustrated in
[0054] A fire protection securing apparatus 1 is another part of the arrangement 100.
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[0056]
[0057] The precise design of the fire protection securing apparatus 1 can be found in the exploded illustration in
[0058] The fire protection securing apparatus 1 is formed by two plates bearing against one another and secured to one another, namely the retaining plate 3 and the assembly plate 4. Four reaction chambers 5 are designed between retaining plate 3 and assembly plate 4. In the exemplary embodiment shown, the respective reaction chamber 5 is formed by a pocket in the assembly plate 4. The respective pocket is fully sealed by placing the retaining plate 3 thereon such that a closed reaction chamber 5 results.
[0059] The assembly plate 4 has a contact surface 6 around the reaction chambers 5 or pockets. The assembly plate 4 contacts the retaining plate 3 with this contact surface 6.
[0060] A drive element 7 of thermally intumescent material is located in each reaction chamber 5. In the exemplary embodiment shown, a layer of this material is laid for each reaction chamber 5.
[0061] The retaining plate 3 is connected to the assembly plate 4 by means of four connecting elements 8, here designed as countersunk screws. To this end, the retaining plate 3 has retaining plate screw holes 9, through which the connecting elements 8 are inserted. Aligned therewith, connecting element receptacles 14 in the form of holes with inner thread are provided in the assembly plate 4.
[0062] Four first securing points 10 in the form of holes for receiving screw heads are provided for securing the retaining plate 3 to the assembly surface 201. In particular,
[0063] Four second securing points 12 in the form of holes with inner thread are provided for securing the door actuator 101 to the assembly plate 4. These securing points 12 align with the door actuator screw holes 103 (see
[0064] The assembly plate 4 has on its circumference a form-locking contour 13, which is designed to secure the covering 104 to the assembly plate 4. As in particular
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