Handheld work apparatus
A handheld work apparatus includes a cooling air channel formed in the housing for guiding a cooling air flow, and at least one cooling air grid, the at least one cooling air grid being arranged at the channel inlet and/or the channel outlet. The housing includes a bearing structure. The bearing structure is a separate component in relation to the at least one cooling air grid. A support arrangement arranged between the cooling air grid and the bearing structure is provided in the cooling air channel. The cooling air grid and the support arrangement are configured and arranged with respect to each other in such a way that a force acting on the cooling air grid can be transmitted from the cooling air grid via the support arrangement to the bearing structure.
1 . A handheld work apparatus comprising:
a housing;
a drive motor arranged in said housing and configured to drive a tool of the work apparatus;
a cooling air channel formed in said housing for guiding a cooling air flow;
said cooling air channel having at least one channel inlet and at least one channel outlet;
at least one cooling air grid arranged at least at one of said channel inlet and said channel outlet;
said housing having a bearing structure;
said bearing structure being a separate component in relation to said at least one cooling air grid;
a support arrangement arranged between said cooling air grid and said bearing structure, said support arrangement being provided in said cooling air channel;
said cooling air grid and said support arrangement being configured and arranged with respect to each other such that a force acting on said cooling air grid is transmittable from said cooling air grid via said support arrangement to said bearing structure;
said support arrangement and said cooling air grid being spaced apart from each other in an unloaded state of said cooling air grid; and,
wherein said cooling air grid and said support arrangement are configured and arranged with respect to each other such that, during a transmission of the force, which causes said cooling air grid to deform until said cooling air grid bears against said support arrangement, said cooling air grid is only elastically deformed, wherein said cooling air grid is an integral part of said housing.
2 . The work apparatus of claim 1 , wherein said support arrangement is at least partially fixedly connected to said bearing structure.
3 . The work apparatus of claim 2 , wherein said support arrangement is at least partially formed in one piece with said bearing structure.
4 . The work apparatus of claim 1 , wherein said support arrangement is a separate component with respect to said cooling air grid.
5 . The work apparatus of claim 1 , wherein said support arrangement is movable relative to said cooling air grid.
6 . The work apparatus of claim 1 , wherein a distance between said support arrangement and said cooling air grid is not more than 3 mm.
7 . The work apparatus of claim 1 , wherein said support arrangement is formed from at least one rib-like support wall, said at least one rib-like support wall having a contact surface via which the force acting on said cooling air grid is transmittable directly from said cooling air grid to said support wall.
8 . The work apparatus of claim 7 , wherein said cooling air grid has a plurality of grid ribs, said contact surface of said support wall extending transversely to said grid ribs along the plurality of said grid ribs.
9 . The work apparatus of claim 8 , wherein said support wall is configured such that distances between said contact surface of said support wall and individual ones of said grid ribs are identical in size.
10 . The work apparatus of claim 7 , wherein said support wall is arranged in said cooling air channel such that a direction of a longitudinal center axis of said support wall corresponds to a flow direction of the cooling air flow.
11 . The work apparatus of claim 1 , wherein said cooling air grid is arranged at a bottom side of said housing so that when the work apparatus is placed on a ground at least a portion of a weight of the work apparatus is supported on said bearing structure via said cooling air grid and said support arrangement.
12 . The work apparatus of claim 11 , wherein:
a spacing, a geometry and material properties of said cooling air grid are selected such that, when subjected to a load caused by the weight of the work apparatus placed on the ground, said cooling air grid is only elastically deformed until said cooling air grid comes into contact with said support arrangement.
13 . The work apparatus of claim 11 , wherein:
said cooling air grid has a plurality of grid ribs that are parallel to each other and at least one connecting web interconnecting said plurality of grid ribs; and,
said support arrangement is formed from at least one rib-like support wall having a contact surface; and,
said contact surface of said at least one rib-like support wall extending transversely to said plurality of grid ribs along said at least one connecting web so that in a deformed state of said cooling air grid forces of several grid ribs are transferable via said connecting web to said at least one rib-like support wall.
14 . The work apparatus of claim 7 , wherein:
said cooling air grid has a plurality of grid ribs; and,
in the unloaded state of said cooling air grid, a plurality of distances between said contact surface of said at least one rib-like support wall and individual ones of said plurality of grid ribs are equal, so that in the loaded state of said cooling air grid a homogeneous force transmission from said cooling air grid to said at least one rib-like support wall takes place.