Power tool
US-2020384664-A1 · Dec 10, 2020 · US
US9604296B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9604296-B2 |
| Application number | US-201514635410-A |
| Country | US |
| Kind code | B2 |
| Filing date | Mar 2, 2015 |
| Priority date | Apr 4, 2014 |
| Publication date | Mar 28, 2017 |
| Grant date | Mar 28, 2017 |
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Official abstract text for this publication.
A chainsaw as a working machine, which switches among stop, drive, and choke operations of an internal combustion engine, includes an operation lever that is turnable, a turning member turnably combined with the operation lever, and a torsion coil spring holding abutting of the operation lever and the turning member. The turning member is coupled to a choke operating member via a choke rod and is regulated in turning from drive position to stop position. When the operation lever is turned from drive position to choke position, the turning member also turns to move the choke rod, by which the choke operating member closes the choke valve. Meanwhile, the operation lever is turned from drive position to stop position, against the turning force of the torsion coil spring.
Opening claim text (preview).
What is claimed is: 1. A working machine having an internal combustion engine provided as a power source and performing switching among stop, drive, and choke operations of the internal combustion engine, the working machine comprising: an operation lever turnable to a stop position in which the internal combustion engine is stopped, a drive position in which the internal combustion engine is made to be operational, and a choke position in which the choke operation is performed; a turning member turnably combined with the operation lever; a coupling biasing member that couples the operation lever to the turning member and imparts relative turning forces to both of the operation lever and the turning member; and a choke rod with one end coupled to a choke operating member that operates a choke valve and the other end coupled to the turning member, wherein the operation lever and the turning member are held in a state of abutting each other due to the turning forces imparted by the coupling biasing member, and the turning member is regulated in turning in a direction from the drive position to the stop position, wherein when the operation lever is turned from the drive position to the choke position, the turning member turns along with the operation lever to move the choke rod, and the movement of the choke rod causes the choke operating member to close the choke valve, whereas when the operation lever is turned from the drive position to the stop position, the operation lever moves against the turning force imparted by the coupling biasing member without turning the turning member. 2. The working machine according to claim 1 , wherein turning of the turning member in the direction from the drive position to the stop position is regulated by the choke rod. 3. The working machine according to claim 1 , wherein the operation lever is turnably supported by a given support shaft, and the turning member is turnably combined with the operation lever around the support shaft. 4. The working machine according to claim 3 , wherein the operation lever has a cylindrical shaft portion with a shaft insertion hole through which the support shaft is inserted, wherein the turning member is turnably supported by the cylindrical shaft portion of the operation lever, wherein the coupling biasing member is attached to the cylindrical shaft portion of the operation lever so as to couple the operation lever to the turning member and to impart relative turning forces to the operation lever and the turning member. 5. The working machine according to claim 4 , wherein the coupling biasing member is a torsion coil spring having a coil portion through which the cylindrical shaft portion of the operation lever can be inserted, a first hook portion extending from one end side of the coil portion, and a second hook portion extending from the other end side of the coil portion, wherein the coil portion is attached to the cylindrical shaft portion of the operation lever, the first hook portion is hooked on the operation lever, and the second hook portion is hooked on the turning member. 6. The working machine according to claim 1 , further comprising a throttle lever that is turned to adjust the flow rate of air-fuel mixture supplied to the internal combustion engine, wherein the throttle lever in an initial position, in which the throttle lever is not turned yet, prevents turning of the operation lever from the drive position to the choke position, and allows the turning of the operation lever from the drive position to the choke position when the throttle lever has been turned from the initial position. 7. The working machine according to claim 1 , wherein the operation lever returns to the drive position due to the turning force imparted by the coupling biasing member, when a turning operation force is removed in an intermediate position between the drive position and the stop position. 8. The working machine according to claim 1 , wherein the operation lever has a pressing section formed so as to press a switch terminal, formed of an elastic material, when the operation lever is in the stopped position, wherein the pressing section presses the switch terminal to disable an ignition section of the internal combustion engine. 9. The working machine according to claim 8 , wherein when the operation lever is turned from the drive position to the stop position, the pressing section presses the switch terminal even in a position before the stop position, to disable the ignition section of the internal combustion engine. 10. The working machine according to claim 8 , wherein the switch terminal has a function as a turning stopper that inhibits the turning of the operation lever by engaging with the operation lever placed in the stop position. 11. The working machine according to claim 10 , wherein the turning stopper formed by the switch terminal for the operation lever is released by turning the operation lever in the stop position by a given amount toward the drive position, and thereafter the operation lever turns up to the drive position due to the turning force imparted by the coupling biasing member.
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