This application claims priority of German patent application no. 10 2010 045 994.1, filed Sep. 18, 2010, the entire content of which is incorporated herein by reference.
The invention relates to a hand held work apparatus having an electric drive motor and a power supply unit for the drive motor.
DE 10 2007 039 828 B3 discloses an electric machine tool having a blower and a battery. The electric machine tool is configured as a hammer drill and has air inlet openings in the rear housing region. The cooling air is drawn in through the housing in the direction of the battery via the motor arranged adjacent to the air inlet openings and exits the housing above the battery.
In order to achieve sufficient cooling of the drive motor, a sufficient amount of cooling air must be conveyed through the housing. With very large air inlet openings the risk that dirt particles can be drawn into the housing is increased. With small air inlet openings, the movement of a large volume flow leads to high flow velocities and negative pressures which likewise can promote the drawing in of dirt particles. In particular, the electronic control is sensitive to heat as well as dirt. Here, a sufficient cooling must be ensured and simultaneously it must be ensured that the electronic control does not become excessively contaminated with dirt.
It is an object of the invention to provide a handheld work apparatus of the type described above which has sufficient cooling with little tendency for dirt accumulation.
The handheld work apparatus of the invention includes: an electric drive motor; a power supply unit for the drive motor; a housing having a receptacle for the power supply unit; an electronic control; a fan wheel for moving cooling air; the drive motor being configured to drive the fan wheel; a housing having at least one air inlet opening for cooling air; the fan wheel drawing in a first cooling air flow through the air inlet opening during operation; and, the work apparatus being configured to facilitate drawing in a second cooling air flow via the receptacle of the power supply unit.
Only a partial cooling air flow is drawn in via the air inlet opening. A second partial cooling air flow is drawn in via the receptacle of the power supply unit. By dividing the total cooling air flow into multiple partial cooling air flows, which are drawn in at different locations, the inlet opening for each partial air flow can be kept comparatively small. The total draw-in area can be enlarged so that low flow velocities result. The receptacle of the power supply unit is typically arranged in a region where only little contamination occurs, so that comparatively clean cooling air can be drawn in from this region. Because of the constructively formed small distance between the power supply unit and the receptacle no further measures for covering the inlet opening are necessary.
Advantageously, the receptacle for the power supply unit is arranged in a region which faces away from the tool of the work apparatus. Clean cooling air can be drawn in from this region. The air inlet opening for the first cooling air flow is, in particular, situated closer to the tool than the receptacle of the power supply unit. Air which is more likely to be dirty is thus drawn in via the air inlet opening. In particular, a first gap, via which the second cooling air flow is drawn in, is formed between the power supply unit and the edge of the receptacle. As a result of the drawing-in via a gap, the penetration of dirt particles which are larger than the gap is constructively prevented. The second cooling air flow, in particular, serves to cool the control. Advantageously, the control has at least one cooling rib around which cooling air flows during operation. In this way, the control is cooled by air of the second cooling air flow which is more likely to be clean. Thus, contamination of the control is prevented.
Advantageously, the housing has an interior housing space in which the control is arranged. Thereby, the interior housing space is separated from the receptacle of the power supply unit, in particular, by an intermediate plate. Thus, a simple configuration is achieved. The intermediate plate can, for example, be part of a contact carrier of the power supply unit. The air inlet opening for the first cooling air flow advantageously leads into the interior housing space. In the typical working position of the work apparatus, the control is arranged above the air inlet opening for the first cooling air flow. If the first cooling air flow is partially redirected to the control, then it must flow upward, whereby any heavier dirt particles may fall downward. As a result of the redirection and the upward flow, a partial cleansing of the first cooling air flow is achieved. This prevents larger dirt particles from reaching the control.
In particular, a second gap, through which the second cooling air flow flows into the interior housing space of the work apparatus, is formed between the intermediate plate and the housing wall of the housing. The second gap can be made simply without any additional means. Sealing of the intermediate plate relative to the housing wall can be omitted, so that a simple configuration results. Because the gap can extend over a large portion of the periphery of the intermediate plate, a long gap length and thus a comparatively large total area via which the second cooling air flow can pass from the receptacle into the interior housing space, will result. Thus, low flow velocities are achieved. The control is, in particular, arranged adjacent to a section of the second gap. The control is thus cooled mainly by the second, clean cooling air flow.
The work apparatus has a first longitudinal side and a second longitudinal side situated opposite to the first longitudinal side. The air inlet opening is arranged on the first longitudinal side. An advantageous cooling air guidance results when the first cooling air flow enters into the housing at the first longitudinal side and flows from the first longitudinal side in the direction onto the second longitudinal side. The first cooling air flow is redirected in the housing adjacent to the second longitudinal side and flows back in the direction of the first longitudinal side. Advantageously, the drive motor is located in the flow path from the second longitudinal side to the first longitudinal side and the control is located in the flow path from the first longitudinal side to the second longitudinal side, so that the cooling air first flows over the control and subsequently flows through the drive motor. Advantageously, the first cooling air flow and the second cooling air flow together from the first to the second longitudinal side. The first cooling air flow and the second cooling air flow exit the housing via a common air outlet opening. The air outlet opening is advantageously arranged in the region of the first longitudinal side and underneath the air inlet opening.
Advantageously, the second cooling air flow flows out of the receptacle of the power supply unit into the interior housing space at the first as well as the second longitudinal side. In particular, the second cooling air flow also flows into the interior housing space at the top side of the housing. Thus, a large flow area is achieved with a small gap width.
The power supply unit advantageously is a battery pack. It can, however, also be provided that the power supply unit comprises one or more batteries. The drive motor advantageously is an external rotor motor and the blower wheel is integrated on the rotor of the drive motor. The work apparatus, in particular, is a chain saw having a rear handle and a bale handle. The receptacle for the power supply unit is arranged on the top side of the housing in an area between the rear handle and the bale handle.
The invention will now be described with reference to the drawings wherein:
A receptacle 7 is formed in the housing 2. A battery pack 8 is arranged in the receptacle 7 as a power supply unit. The receptacle 7 opens in the upward direction in the area of the housing cover 37. The receptacle 7 opens at the top side 19 of the housing in an area between the back handle 3 and the bale handle 4. A first gap 32 is formed between the battery pack 8 and the wall of the receptacle 7. The first gap 32 extends over the entire periphery of the battery pack 8. The housing 2 has a first longitudinal side 30 which is arranged in the front in
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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 |
---|---|---|---|
10 2010 045 994 | Sep 2010 | DE | national |
Number | Name | Date | Kind |
---|---|---|---|
4198752 | Bross | Apr 1980 | A |
4483072 | Nagashima et al. | Nov 1984 | A |
4592445 | Sawada | Jun 1986 | A |
4787924 | Nagashima et al. | Nov 1988 | A |
4930583 | Fushiya et al. | Jun 1990 | A |
5018492 | Wolf et al. | May 1991 | A |
5233750 | Wolf et al. | Aug 1993 | A |
6761136 | Ohsawa | Jul 2004 | B2 |
6826895 | Iida et al. | Dec 2004 | B2 |
6866105 | Pfisterer et al. | Mar 2005 | B2 |
6967464 | Heigl et al. | Nov 2005 | B2 |
D536590 | Busschaert | Feb 2007 | S |
D560456 | Gieske et al. | Jan 2008 | S |
D575605 | Yamamoto et al. | Aug 2008 | S |
D615836 | Kosugi et al. | May 2010 | S |
D636652 | Mehra | Apr 2011 | S |
RE42468 | Heigl et al. | Jun 2011 | E |
D642885 | Sugishita et al. | Aug 2011 | S |
D660120 | Tajik et al. | May 2012 | S |
8757288 | Heinzelmann et al. | Jun 2014 | B2 |
8869912 | Rosskamp et al. | Oct 2014 | B2 |
20040021377 | Mazuka et al. | Feb 2004 | A1 |
20040098869 | Ashfield | May 2004 | A1 |
20090100688 | Sugishita | Apr 2009 | A1 |
20100083511 | Shimokawa et al. | Apr 2010 | A1 |
20100122683 | Kawana et al. | May 2010 | A1 |
20100170538 | Baker et al. | Jul 2010 | A1 |
20100218385 | Mang et al. | Sep 2010 | A1 |
20100218386 | Roβkamp et al. | Sep 2010 | A1 |
20100218967 | Roβkamp et al. | Sep 2010 | A1 |
Number | Date | Country |
---|---|---|
102441877 | May 2012 | CN |
103 29 828 | Jan 2005 | DE |
10 2007 039 828 | Nov 2008 | DE |
102010045994 | Mar 2012 | DE |
2431132 | Mar 2012 | EP |
Number | Date | Country | |
---|---|---|---|
20120066916 A1 | Mar 2012 | US |