The invention relates to an apparatus for clamping the trunk of a Christmas tree or the like, consisting of a stand, with at least three clamping jaws, which are disposed in a base plate with an opening for accommodating the trunk and are distributed about this opening and can be moved into the accommodating opening for clamping the trunk.
For setting up Christmas trees, apparatuses are known, which are called stands and consist of a housing-like or frame-like supporting body, which has an accommodating opening, into which the lower region of the trunk of the Christmas tree can be inserted. Since the cross section of the trunks of Christmas trees differs and the Christmas trees must be aligned with their trunk in a vertical position, the opening of the supporting body is always larger than the maximum cross section of the trunk. Different apparatuses have become known for securing or clamping the trunk in this accommodating opening.
The German Offenlegungsschrift 36 06 778 discloses a Christmas tree stand, for which roll-shaped holding elements are pressed by a rotational movement against the trunk. It is not possible to fit this holding element individually to the shape of the trunk. Since the trunks of Christmas trees rarely are straight and uniformly round, the trunk can be aligned only by mechanical processing or connections. In order to be able to carry out the rotational movement, the Christmas tree stand must be fixed to the floor so that it does not rotate along. No safety mechanism is provided to prevent an automatic opening.
The German Auslegeschrift 28 14 830 discloses a stand, which is also suitable for accommodating Christmas trees. In the case of this stand, the holding force is applied exclusively by a strong spring. The opening is accomplished by way of a lever at the bottom of the sleeve accommodating the trunk. As a result, the simultaneous use of the sleeve as a water container is precluded.
In the German utility patent 94 18 483, a Christmas tree stand is described and shown, for which several holding elements are moved against the trunk by means of a rod with a denticulation and a lever with locking mechanism engaging thereon are moved against the trunk. In the case of trunks with relatively small cross sections, several lifting motions of the lever are required, until the clamping position is reached.
Finally, the German Offenlegungsschrift 39 32 473 discloses a Christmas tree stand, for which several holding elements are brought up to the trunk by shortening a rope loop. At the same time, the holding force becomes active only when all holding elements lie against the trunk. The rope is put under tension by a foot lever, so that, in every case, several lifts are required before all holding elements lie against the trunk. The rope, functioning as the actual clamping element, is fixed in its holding position by a latch mechanism. An additional lever is required for loosening the rope. The rope, serving as clamping element, cannot transfer any forces when the holding elements are opened. For this reason, for the reverse motion of the holding elements, special springs are provided, the force of which must be dimensioned so that they can pull out holding elements, which may have penetrated into the trunk, and can also overcome the friction of the rope.
It is therefore an object of the invention to indicate a method for clamping the trunk of a Christmas tree or the like, by which method it becomes possible to adapt the clamping jaws easily to the cross section of the trunk and to clamp the trunk securely and which does not require a large lift for the actual clamping motion. Moreover, it shall be an easy matter to loosen or cancel the clamping.
Pursuant to the invention, it is proposed for accomplishing this objective for a method of the type described above that the clamping jaws are moved by way of the fastener against the force of elastic elements out of the accommodating opening, that, after the trunk is inserted, the clamping jaws are released by a movement of the fastener and, at first, are brought into contact with the trunk by slightly tensioned elastic elements and that only subsequently the clamping jaws firmly clamp the trunk by means of a further movement of the fastener.
By means of such a method, the clamping jaws are brought into contact with the trunk for a clamping movement initially by the force of the elastic elements. Only then is the actual clamping motion initiated by way of the fastener. The lift required for this is relatively slight. The path of the fastener for loosening the clamping and, with that, for releasing the accommodating opening, is also relatively short. Even a trunk, clamped particularly firmly, can be loosened easily and reliably.
Further distinguishing features of an inventive method and apparatus are disclosed in the claims.
The invention is described in greater detail in the following by means of an example, which is shown in a simplified manner in the drawing, in which
FIG. 1 shows a plan view of an inventive apparatus in the loosened position,
FIG. 2 shows the apparatus of FIG. 1 in the clamped position,
FIG. 3 shows the arrangement of the apparatus of FIGS. 1 and 2 in a stand and
FIG. 4 shows a plan view of the configuration of an actuator.
In FIGS. 1 to 4 of the drawing, an apparatus for clamping the trunk of a Christmas tree, which is only indicated, is shown. To begin with, the apparatus consists of a base plate 1 with a circular outer contour. An accommodating opening 2, which also has a circular cross section, is incorporated in this base plate 1. The base plate 1 is disposed on a pot-like vessel 4 (FIG. 3), the bottom of which is provided with a centering point 3 and which can be used for accommodating water.
In the example shown, three bolts 6 are disposed on the base plate 1. They extend perpendicularly to the surface of the base plate 1 and each pivotably accommodates a clamping jaw 5. At each clamping jaw 5, one end of a spring 7 is connected, the other end of which is secured to the base plate 1. In the example shown, the springs 7 engage the clamping jaws 5 in such a manner, that the latter endeavor to turn counterclockwise on the bolts 6. This means that the clamping jaws 5 time and again attempt to assume a position as far as possible within the accommodating opening 2, as can be seen in FIG. 2.
At their ends protruding into the accommodating opening 2, the clamping jaws 5 are provided with a corrugation or denticulation which, over springs 7, can be brought to lie against the trunk, which is only indicated. At their other end, the clamping jaws 5 have a circularly extending denticulation 11.
A fastening ring 9, on which, in the example shown, there are a total of three dogs 8 and three catches 10, is assigned to the base plate 1. Of these, in each case one dog 8 and one catch 10 are assigned to a clamping jaw 5. The dogs 8 in each case serve for moving the clamping jaws 5 open, whereas the catches 10 are responsible for the movement, by means of which they are clamped fast By means of an appropriate rotational movement of the fastening ring 9, either the dogs 8 or the catches 10 come to lie or act against a clamping jaw 5. According to the representation of FIG. 1, the fastening ring 9 was turned in the clockwise direction, so that now a dog, which has moved the clamping jaws 5 into their open position, lies against all three clamping jaws 5. As soon as the trunk, which is indicated in FIGS. 2 and 3, was inserted into accommodating opening 2, the fastening ring 9 is rotated counterclockwise. With that, the dogs 8, which lie against the clamping jaws 5 in FIG. 1, are removed and the clamping jaws 5 can be swiveled by their springs 7 in such a manner, that they lie with their corrugation or denticulation against the trunk (FIG. 2), Upon further counterclockwise rotation of the fastening ring 9, the catches 10 engage the denticulation 11 of the clamping jaws 5, which leads to a clamping of the inserted trunk.
An actuator 12 to 15 is assigned to the fastening ring 9 for moving it. This actuator 12 to 15 consists first of all of a bolt 15, which is disposed at the underside of the fastening ring 9. This bolt 15 engages a spirally extending guiding slot 14 of a drum 13, which is mounted in a fixed position and can be turned by a lever 12. By appropriately swiveling the lever 12, the drum 13 and, with that, at the same time also the fastening ring 9 can be rotated in the appropriate direction, When the lever 12 is swiveled downward out of the position shown in FIG. 3, the drum 13, and with that the fastening ring 9 are turned in such a manner, that the clamping jaws 5 clamp the indicated trunk. However, if this lever 12 is raised, the clamping jaws 5 return to their initial position of FIG. 1. If necessary, the lever 12 can be inserted loosely into the drum 12, so that it can be removed as a safeguard against the unintentional loosening of the clamping. According to the representation in FIG. 3, the apparatus described, together with the vessel 4 and the actuator 12 to 15, is accommodated in a housing 16, which has a slot 17, through which the lever 12 passes to the outside.
In a modification of the example described, it is possible to swivel the clamping jaws 5 by friction. Moreover, the fastening ring 9 is formed from two rings which, between them, enclose the corresponding end of the clamping jaws 5. If necessary, the interacting engaging surfaces of the clamping jaws 5 and of the fastening ring 9 are provided with a coating to increase the friction. Moreover, it is possible to dispose the clamping jaws 5 so that they can be set radially on the base plate 1. The described actuator for moving the clamping jaws 5 can also be constructed in a different manner.