This application claims priority of German patent application no. 10 2010 011 986.5, filed Mar. 19, 2010; the entire content of which is incorporated herein by reference.
U.S. Pat. No. 6,799,642 B2 discloses a handheld work apparatus having an anti-vibration element which includes a tear-off guard. A holder of the tear-off guard is held in the slot by a housing part. Fixation by means of a housing part is not always easily possible because, for example, in the case of plastic housing parts the demolding directions must be taken into account. Because the ledge on the housing partially projects into the coil spring, the mounting direction is predefined. Thus, the ledge can be fixed on the housing only in the case of special installation situations.
It is an object of the invention to provide a handheld work apparatus whose anti-vibration element has a simple configuration and can be mounted easily.
The handheld work apparatus of the invention includes: a drive motor; at least one handle; at least one anti-vibration unit having a coil spring having first and second ends; the coil spring being operatively connected to the handle at the first end and with the drive motor at the second end; the anti-vibration unit having a tear-off guard which extends through the anti-vibration unit; and, a centering element arranged on the tear-off guard.
Because the centering element is arranged on the tear-off guard itself, no special configuration of the housing, on which the anti-vibration element is fixed, is necessary. This results in a simple configuration. Because the centering element is arranged on the tear-off guard, the mounting direction is not predetermined thereby.
A simple configuration results when the centering element is cylindrical. The diameter of the cylinder can be smaller than the height of the cylinder so that a cylindric shape of the centering element results, or it can be larger than the height of the cylinder so that a disc-like shape of the centering element results. Advantageously, the outer diameter of the centering element is at least approximately 60% and at most approximately 100% of the inner diameter of the coil spring. In particular, the outer diameter of the centering element is slightly smaller than the free inner diameter of the coil spring so that the centering element does not affect the dampening or hardly affects the dampening. The centering element is large enough to prevent the tear-off guard from falling radially outwards in the slot and thereby causing damage to the coil spring or the plug under corresponding load. It can also be desirable, however, to have additional damping effects through the centering element in radial and/or axial directions. In this case, the outer diameter and/or the length of the centering element are to be chosen to correspond to the desired damping effect. The centering element can fully fill up the free interior space of the coil spring. Mounting of the centering element under pretension can also be advantageous.
The width of the centering element, which is measured in the direction of the longitudinal axis of the coil spring, advantageously corresponds approximately to one to ten times the pitch of the coil spring. Thus, support of the centering element on the inner periphery of, the coil spring can be ensured. With a comparatively small width of the centering element, dampening in the axial direction of the coil spring can be ensured which is essentially unhindered by the centering element. Advantageously, a centering element having a large width will be chosen if a dampening effect via the centering element is desired. In this connection, the width of the centering element can be larger than the free interior space of the coil spring, so that the centering element is held under pretension between the fixing elements of the coil spring.
Advantageously, the centering element is made of elastic material. The elastic material is, in particular, a foamed plastic, advantageously foamed polyurethane. With foamed plastic such as in particular foamed polyurethane, good centering can be achieved at a low weight. At the same time, clattering of the centering in the coil spring is prevented, and in the case of very large relative movements between the handle and drive motor, the centering element can additionally add a dampening effect. Advantageously, the centering element is movably supported on the tear-off guard in the longitudinal direction of the tear-off guard. The configuration is simplified thereby. In particular, the centering element has a mounting slot for fixation on the tear-off guard. Thus, the centering element can be slipped on the tear-off guard in a simple manner.
Advantageously, the coil spring is supported by a fixing element on at least one end. For fixing the tear-off guard, it is advantageously provided that the fixing element has a slot which runs radially outward in relation to the longitudinal center axis of the coil spring. The tear-off guard can be suspended in the slot in a simple manner, thus resulting in simple fixing of the tear-off guard. A simple configuration results when the fixing element is a plug which is screwed into the coil spring.
At least on one end, the tear-off guard advantageously has a holder which engages behind a wall section of the fixing element. Thus, the position of the tear-off guard is ensured in the axial direction of the coil spring.
The slot is closed radially outwardly in particular by the coil spring, so that any unintended disengagement of a holder is prevented by the construction. Advantageously, two fixing elements are provided each having a slot to receive the tear-off guard and being screwed onto the coil spring. Because the centering element is arranged on the tear-off guard, the centering element can secure the position of both holders in the slots. In this way, the centering element is arranged in particular between the fixing elements on the tear-off guard. Due to the inherent rigidity of the securing rope, a position securing device in the middle region of the securing rope is sufficient to prevent the holders in the slots from sliding radially outwards. In order to achieve additional dampening by the centering element, it is, in particular, provided that the width of the centering element corresponds to at least the distance of the fixing elements.
The tear-off guard advantageously includes a fixedly connected securing rope at whose end the holder is fixed. In particular, the securing rope is a steel rope which has a high strength at a comparatively low weight.
The invention will now be described with reference to the drawings wherein:
The plug 11 screwed into the end of the coil spring 10 facing the handle housing 2 has a receptacle 14 for fixation on the handle housing 2, which engages about a guide 13 formed on the handle housing 2. The guide 13 has a T-shaped cross-section and is arranged in a recess on the handle housing 2. For securement in the longitudinal, direction of the guide 13, the plug 11 is screwed onto the handle housing 2 by means of a mounting screw, not shown here. The longitudinal axis of the mounting screw advantageously runs in the longitudinal direction of the guide 13.
The plug 12 which is screwed into the end of the coil spring 10 arranged at the motor housing 5 is arranged in a receptacle 32 on the motor housing 5 and is attached to the motor housing 5 by means of a mounting screw which is also not shown.
As
As
A corresponding slot 36 is formed in the second plug 12. The slot 36 likewise has a first section 18 whose width approximately corresponds to the outer diameter of the holder 17 and a second section 19 in the area of wall section 34 which is somewhat wider than the diameter of the securing rope 15. The first section 18 in the second plug 12 is open in the direction of the longitudinal center axis 20 of the coil spring 10. The slot 36 is closed radially outwardly by the coil spring 10. As
As
To avoid this, a centering element 21, shown in
The centering element 21 is arranged approximately centrally between the plugs 11 and 12 and is movably supported on the securing rope 15 Due to the relative movements during operation, an approximate centering of the centering element 21 on the tear-off guard 29 results during operation. As
A further embodiment of an anti-vibration element 9 is shown in
In the embodiment according to
As
It is understood that the foregoing description is that of the preferred embodiments of the invention and that various changes and modifications may be made thereto without departing from the spirit and scope of the invention as defined in the appended claims.
Number | Date | Country | Kind |
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10 2010 011 986 | Mar 2010 | DE | national |
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