This application claims priority from Taiwanese application no. 102121524, filed on Jun. 18, 2013, the disclosure of which is incorporated in its entirety herein by reference.
1. Field of the Invention
This invention relates to a combustion-type power tool, more particularly to a combustion-type power tool which can be operated in a force-saving manner.
2. Description of the Related Art
As shown in
U.S. Pat. No. 7,654,429 discloses a combustion nailer which includes a tool housing having a combustion chamber and a fuel cell chamber, a workpiece contact element, a fuel cell disposed in the fuel cell chamber, and a fuel cell actuator assembly which includes an actuator element and a pivot member that are pivotally mounted to the tool housing. When the workpiece contact element is pressed against a workpiece to initiate pivoting movement of the pivot member for axially depress the actuator element, an axial depressing force is exerted on a fuel cell stem of the fuel cell to cause the fuel cell stem to dispense a measured dose of fuel to the combustion chamber. However, since the axial force is exerted on the fuel cell stem as a result of angular pivoting movement of the actuator element, the axial depressing force may not be exerted precisely on the fuel cell stem.
Therefore, an object of the present invention is to provide a combustion-type power tool that can overcome the aforesaid drawbacks of the prior art, particularly, a combustion-type power tool that can be operated in a force-saving manner to cause a fuel canister to dispense a measured dose of fuel.
According to this invention, a combustion-type power tool is for use with a fuel canister which extends along a lengthwise axis to terminate at a bottom end and a top end, and which has a valve stem that extends along the lengthwise axis and that is movable relative to the top end between a dispensing position, where a measured dose of fuel is dispensed, and a non-dispensing position. The combustion-type power tool includes a housing body, a cylinder, a valve sleeve, a safety unit, a holding member, a fuel canister, a fuel canister actuator unit, and a lever unit. The housing body defines a main chamber which extends in a longitudinal direction to terminate at a nose end and a head end. The cylinder is disposed in the main chamber, has a cylinder axis in the longitudinal direction, and defines a combustion chamber. The valve sleeve is sleeved on the cylinder and is movable relative to the cylinder between an open position, where the combustion chamber is opened, and a close position, where the combustion chamber is closed. The valve sleeve has a nose-side end and a head-side end. The safety unit is configured to be coupled to and moved with the valve sleeve such that when the safety unit is pressed against a workpiece to move from an extended position to a retracted position, the valve sleeve is displaced from the open position to the close position. The holding member defines a central axis parallel to the cylinder axis, and has a base oriented normal to the central axis. The holding member is disposed proximate to the nose-side end and is movable relative to the cylinder between a normal position, where the base is remote from the head end, and a pressed position, where the base is close to the head end. The base is adapted for detachable placement of the fuel canister thereon with the lengthwise axis in line with the central axis such that when the holding member is displaced from the normal position to the pressed position, the valve stem is displaced from the non-dispensing position to the dispensing position. The fuel canister actuator unit includes a pivoted end pivotally mounted to the housing body proximate to the head end, and an intake end which has an intake port defining a port axis and which is angularly movable between a ready position, where the port axis is in line with the lengthwise axis so as to permit the intake port to be brought into pressing engagement with the valve stem to place the valve stem in the dispensing position, and a clear position, where the fuel canister is removable from or placeable on the base. The lever unit includes at least one lever having a power region and a weight region. The lever unit is disposed such that the power region is actuated by displacement of the valve sleeve from the open position toward the close position to permit the weight region to displace the holding member from the normal position to the pressed position so as to force the valve stem into pressing engagement with the intake port, thereby permitting the measured dose of fuel to be delivered to the combustion chamber through the intake port.
Other features and advantages of the present invention will become apparent in the following detailed description of the preferred embodiment of the invention, with reference to the accompanying drawings, in which:
The combustion-type power tool 2 is for use with a fuel canister 24 which extends along a lengthwise axis (C) to terminate at a bottom end 242 and a top end 243, and which has a valve stem 241 that extends along the lengthwise axis (C) and that is movable relative to the top end 243 between a dispensing position, where a measured dose of fuel is dispensed, and a non-dispensing position. The valve stem 241 is biased to the non-dispensing position.
The housing body 20 defines a main chamber 201 and a canister chamber 25. The main chamber 201 extends in a longitudinal direction (X) to terminate at a nose end 202 and a head end 203. The canister camber 25 extends in the longitudinal direction (X) for receiving the fuel canister 24.
The cylinder 21 is disposed in the main chamber 201, has a cylinder axis (A) in the longitudinal direction (X), and defines a combustion chamber 210.
The valve sleeve 22 is sleeved on the cylinder 21 and is movable relative to the cylinder 21 between an open position, where the combustion chamber 210 is opened, and a close position, where the combustion chamber 210 is closed. The valve sleeve 22 has a nose-side end 221 and a head-side end 222. Once the valve sleeve 22 is displaced from the open position to the close position, a trigger 7 of the combustion-type power tool 2 is operable to ignite fuel in the combustion chamber 210.
The safety unit 231 is disposed downwardly of the nose end 202 and is configured to be coupled to and moved with the valve sleeve 22 such that when the safety unit 231 is pressed against a workpiece (W) to move from an extended position to a retracted position, the valve sleeve 22 is displaced from the open position to the close position. The safety unit 231 is biased to the extended position by a spring member (not shown).
The holding member 5 is received in the canister chamber 25, and is configured to hold the fuel canister 24. The holding member 5 defines a central axis (B) substantially parallel to the cylinder axis (A), and has a base 51 which has a periphery 511 and which extends in a plane normal to the central axis (B), that is, the base 51 is oriented normal to the central axis (B). The holding member 5 is disposed proximate to the nose-side end 221, and is movable relative to the cylinder 21 between a normal position (see
In this embodiment, the holding member 5 further has a tubular wall 52 and two arms 53 (only one is visible in
The fuel canister actuator unit 26 includes a pivoted end 261 pivotally mounted to the housing body 20 proximate to the head end 203, and an intake end 262 which has an intake port 263 defining a port axis (D) and which is angularly movable between a ready position, where the port axis (D) is in line with the lengthwise axis (C) so as to permit the intake port 263 to be brought into pressing engagement with the valve stem 241 to thereby place the valve stem 241 in the dispensing position, and a clear position, where the fuel canister 24 can be removed from or placed on the base 51.
The lever unit 6 is disposed in the canister chamber 25 and pivotally connected to the housing body 20. The lever unit 6 includes a pair of levers 60 disposed at the opposite sides of the fuel canister 24 in terms of the central axis (B). Each of the levers 60 has a power region 62 and a weight region 63, and the power regions 62 of the levers 60 are actuated by displacement of the valve sleeve 22 from the open position toward the close position to permit the weight regions 63 of the levers 60 to displace the holding member 5 from the normal position to the pressed position so as to force the valve stem 241 into pressing engagement with the intake port 263, thereby permitting the measured dose of fuel to be delivered to the combustion chamber 210 through the intake port 263.
In this embodiment, each of the actuated ends 54 is actuated by the weight region 63 of a corresponding one of the levers 60 so as to permit movement of the holding member 5 from the normal position to the pressed position.
In this embodiment, each of the levers 6 extends lengthwise to terminate at a sleeve-side end 62 which serves as the power region 62, and a fulcrum end 61 which is pivotally mounted to the housing body 20. As shown in
Preferably, the housing body 20 is formed with an access opening 204 for providing access to the fuel canister actuator unit 26. The combustion-type power tool 2 further includes a fuel canister door 27 which is pivotally mounted to the housing body 20 and is angularly movable between a locked position, where the access opening 204 is closed by the fuel canister door 27, and an unlocked position. The fuel canister door 27 is configured such that in the locked position, the fuel canister door 27 is brought into pressing engagement with the fuel canister actuator unit 26 to thereby prevent movement of the intake end 262 away from the ready position.
Preferably, the combustion-type power tool 2 further includes a coupling shank 232 which couples the safety unit 231 to the valve sleeve 22 so as to permit the valve sleeve 22 to move with the safety unit 231.
Preferably, the combustion-type power tool 2 further includes a lever actuating member 4 which extends in a radial direction (Z) from the valve sleeve 22 to terminate at an actuating end 41. As best shown in
When the safety unit 231 is pressed against a workpiece (W) to move from the extended position to a retracted position, the valve sleeve 22 is displaced from the open position to the close position to actuate the power regions 62 of the lever unit 6, the holding member 5 is displaced by the weight regions 63 of the lever unit 6 to move from the normal position to the pressed position, the valve stem 241 is forced into engagement with the intake port 263 of the fuel canister actuator unit 26 by virtue of the displacement of the holding member 5 to place the valve stem 241 in the dispensing position, and the measured dose of fuel is dispensed from the fuel canister 24 and is delivered to the combustion chamber 210 through the intake port 253.
While the present invention has been described in connection with what are considered the most practical and preferred embodiment, it is understood that this invention is not limited to the disclosed embodiment but is intended to cover various arrangements included within the spirit and scope of the broadest interpretations and equivalent arrangements.
Number | Date | Country | Kind |
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102121524 | Jun 2013 | TW | national |