This application claims priority of Taiwanese Patent Application No. 100211124, filed on Jun. 20, 2011, the disclosure of which is herein incorporated by reference.
1. Field of the Invention
This invention relates to a pneumatic nailing machine, more particularly to a pneumatic nailing machine with an exhaust control device.
2. Description of the Related Art
Referring to
However, due to the provision of the passage 15 and the start valve 14, such exhaust mechanism is complicated in construction. In addition, as the passage 15 is quite long, the nailing speed is adversely affected.
An object of the present invention is to provide a pneumatic nailing machine which can improve the nailing speed and which may be adapted to be auto-controlled.
According to this invention, the pneumatic nailing machine includes a main housing extending along an axis, and having front and rear ends axially opposite to each other. The main housing defines a compressed air chamber disposed distal from the rear end to be supplied with primary pressured air, and a counter-pressure zone disposed proximate to the rear end. An inlet port is disposed upstream of the counter-pressure zone to be supplied with secondary pressured air. A striking cylinder is disposed in the main housing, and has a rear portion which defines an access opening for entry of the primary pressured air into the striking cylinder from the compressed air chamber. A piston and driver assembly is disposed in the striking cylinder and moved relative to the striking cylinder along the axis so as to drive a fastener out of the front end when the primary pressured air is supplied to the striking cylinder through the access opening. A head valve is disposed between the rear end of the main housing and the rear portion of the striking cylinder, and is movable relative to the striking cylinder between an opened position, where the primary pressured air is permitted to enter the striking cylinder through the access opening to generate an active pressure, and a closed position where the primary pressured air is prevented from entering the striking cylinder. The head valve has a front valve end and a rear valve end which is disposed downstream of the counter-pressure zone to be exerted upon by a counter pressure. Once the active pressure is made higher than the counter pressure, the front valve end is thrust open to displace the head valve from the closed position to the opened position.
An air valve unit is disposed between the counter-pressure zone and the inlet port, and is configured to be convertible between a let-through state, where the secondary pressured air is permitted to flow into the counter-pressure zone to exert the counter pressure on the rear valve end to counteract the active pressure of the primary pressured air so as to keep the head valve unmoved in the closed position, and a shut-off state, where, in response to a throttling action applied to the supply of the secondary pressured air, the flow of the secondary pressured air into the counter-pressure zone is disrupted, thereby rendering the counter pressure lower than the active pressure.
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:
Referring to
A striking cylinder 31 is disposed in the main housing 2, and has a rear portion 311 which is spaced apart from the rear end 22 of the main housing 2 in the axial direction to define an access opening 310 for entry of the primary pressured air into the striking cylinder 31 from the compressed air chamber 34. A piston and driver assembly 36 is disposed in the striking cylinder 31 and moved relative to the striking cylinder 31 along the axis (X) so as to drive a fastener (not shown) out of the nosepiece 211 when the primary pressured air is supplied to the striking cylinder through the access opening 310 (see
A head valve 32 is disposed between the rear end 22 of the main housing 2 and the rear portion 311 of the striking cylinder 31, and is movable relative to the striking cylinder 31 between an opened position, where the primary pressured air is permitted to enter the striking cylinder 31 through the access opening 310 to generate an active pressure (P1), and a closed position where the primary pressured air is prevented from entering the striking cylinder. Specifically, the head valve 32 has a front valve end 321 and a rear valve end 322 which is disposed downstream of the counter-pressure zone 35 to be exerted upon by a counter pressure (P2). A biasing member 33 is disposed between the rear end 22 of the main housing 2 and the head valve 32 to bias the head valve 32 toward the closed position. Thus, once the active pressure (P1) is made higher than the counter pressure (P2), as shown in
According to this invention, an air valve unit 4 is disposed between the counter-pressure zone 35 and the inlet port 5. Specifically, the air valve unit 4 includes a valve chamber 42 which defines an accommodation space 420 that extends axially to communicate the counter-pressure zone 35 with the inlet port 5, and an exhaust port 432 that is axially spaced apart from the inlet port 5 by the accommodation space 420. A tubular mount 43 extends axially from the exhaust port 432 and into the accommodation space 420 to terminate at an internal port 431 that is spaced apart from the inlet port 5, and which defines an air duct 430 that communicates the internal port 431 with the exhaust port 432. A valve disc 45 has front and rear disc surfaces 451, 452 axially opposite to each other. A flare check valve 453 extends rearwardly and divergently from a marginal region of said front disc surface 452 to terminate at a flared peripheral end 4531. The flared peripheral end 4531 is configured to be dragged on an inner tubular surface of the valve chamber 42 which defines the accommodation space 420. A biasing member 46 in the form of a coil spring 46 is sleeved on the tubular mount 43, and has front and rear anchoring ends that are secured respectively in the rear disc surface 452 of the valve disc 45 and the tubular mount 43 adjacent to the exhaust port 432 so as to bias the valve disc 45 toward the inlet port 5. In this embodiment the valve chamber 42 is integrally formed with the main housing 2, as shown in
Referring to
Referring to
According to this invention, through control of the supply of the secondary pressured air by applying a throttling action to the adaptor 44, the air valve unit 4 is convertible between the let-through state and the shut-off state for performing a nail striking action. Such throttling action can be activated by virtue of the solenoid of the trigger unit 6. Therefore, the pneumatic nailing machine according to this embodiment may be adapted to perform an auto-striking action. Moreover, as the air valve unit 4 is provided close to the counter-pressure zone 35 and the valve disc 45 is controlled by an air pressure difference for automatically controlling the inlet port 5 and the internal port 431, the secondary pressured air can flow rapidly into and be exhausted swiftly from the counter-pressure zone 35, thereby improving the nailing speed. In addition, the construction of the air valve unit 4 is simplified and made compact.
While the present invention has been described in connection with what is 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 |
---|---|---|---|
100211124 | Jun 2011 | TW | national |