This application claims priority to Taiwanese Invention Patent Application No. 111123716, filed on Jun. 24, 2022.
The disclosure relates to an electric nail gun, and more particularly to a flywheel nail gun.
Referring to
Because the pushing rod 161 of the actuation unit 16 is designed to move in the nail-striking direction (P1), the control member 15 has to be located at one side of the pushing rod 161 in the nail-striking direction (P1) so that movement of the pushing rod 161 in the nail-striking direction (P1) is able to urge the control member 15 to push the abutting surface 131.
Therefore, an object of the disclosure is to provide an electric nail gun that has a configuration which is different from the abovementioned prior art.
According to the disclosure, the electric nail gun includes a frame unit, a power unit, a swing arm unit, an impact unit, and an actuation unit. The power unit is mounted to the frame unit, and includes a flywheel that is rotatable. The swing arm unit is pivotably connected to the frame unit and includes a conversion member. The swing arm unit is operable to swing relative to the flywheel in a first direction between an initial position, in which the swing arm unit and the flywheel have a maximum distance therebetween, and a triggered position, in which the swing arm unit and the flywheel have a minimum distance therebetween. The impact unit is adapted for striking a nail, is movably mounted to the swing arm unit, and is operable to be moved by the swing arm unit to come into contact with the flywheel. When the impact unit is in contact with the flywheel, the impact unit is urged by rotation of the flywheel to move in a nail-striking direction that is substantially orthogonal to the first direction. The actuation unit is mounted to the frame unit, and includes a pushing member and an actuation member. The pushing member is rotatable relative to the frame unit and has a pushing surface that faces the conversion member. The actuation member includes a pushing rod that is operable to move relative to the pushing member in the first direction between an extended position, in which the pushing member pushes the conversion member via the pushing surface thereof so that the swing arm unit is in the triggered position, and a retracted position, in which the swing arm unit is in the initial position.
Other features and advantages of the disclosure will become apparent in the following detailed description of the embodiment(s) with reference to the accompanying drawings. It is noted that various features may not be drawn to scale.
It should be noted herein that for clarity of description, spatially relative terms such as “top,” “bottom,” “upper,” “lower,” “on,” “above,” “over,” “downwardly,” “upwardly” and the like may be used throughout the disclosure while making reference to the features as illustrated in the drawings. The features may be oriented differently (e.g., rotated 90 degrees or at other orientations) and the spatially relative terms used herein may be interpreted accordingly.
Referring to
The power unit 3 is mounted to the frame unit 2, and includes a flywheel 31 that is rotatably connected to the frame unit 2, and a motor subunit 32 that is used to drive the flywheel 31 to rotate. Consequently, the flywheel 31 is actuated by electric power.
The swing arm unit 4 substantially extends in a nail-striking direction (X), and is pivotably connected to the frame unit 2. The swing arm unit 4 includes a pivot portion 41 that is pivotably mounted to the frame unit 2, a swing portion 42 that is opposite to the pivot portion 41 and that is spaced apart from the flywheel 31, a support frame 43 that is connected to the swing portion 42 and that extends in a first direction (Z), a conversion member 44 that is disposed on the support frame 43 and that is spaced apart from the swing portion 42 in the first direction (Z), and two arm resilient members 45 that are disposed between the frame unit 2 and the swing portion 42 and that are spaced apart from each other in a second direction (Y). In this embodiment, the first direction (Z) is substantially orthogonal to the nail-striking direction (X). The second direction (Y) is substantially orthogonal to the nail-striking direction (X) and the first direction (Z).
The swing portion 42 is operable to swing relative to the flywheel 31 in the first direction (Z) between an initial position (see
In the embodiment, the conversion member 44 is configured to be a round rod and extends in the second direction (Y).
Each of the arm resilient members 45 provides a restoring force for the swing portion 42 to move toward the initial position when the swing portion 42 swings away from the initial position.
The impact unit 5 is movably mounted to the swing arm unit 4, and includes an impact member 51 that is movably connected to the swing arm unit 4, a nail-striking rod 52 that is connected to the impact member 51 and that is adapted for striking a nail, and a retrieving subunit 53.
The impact member 51 is operable to be moved by the swing arm unit 4 to come into contact with the flywheel 31. When the impact member 51 is in contact with the flywheel 31, the impact member 51 is urged by rotation of the flywheel 31 to move from a ready position (see
In this embodiment, the retrieving subunit 53 is a combination of resilient components, and provides a restoring force for the impact member 51 to move toward the ready position when the impact member 51 is in the nail-striking position.
Referring to
The pushing member 61 is rotatable relative to the frame unit 2, and has a pushing surface 611 that faces the conversion member 44, and a rod-facing surface 612 that cooperates with the pushing surface 611 to define an included angle therebetween. The pushing surface 611 is a curved surface that is convex toward the conversion member 44, and has a peak section 613, and two tail sections 614 that are respectively located at two opposite sides of the peak section 613 and that extend away from the conversion member 44.
It should be noted that each of the pushing surface 611 and the rod-facing surface 612 may not be limited to be a flat surface or a curved surface as shown in Figs. In one embodiment, each of the pushing surface 611 and the rod-facing surface 612 may be an irregular surface as a surface of a cam.
The actuation member 62 has an end surface 621 that faces the swing arm unit 4, and a pushing rod 622 that is movable in the first direction (Z). The rod-facing surface 612 of the pushing member 61 faces the pushing rod 622, and is in contact with an end of the pushing rod 622. The pushing rod 622 is operable to move relative to the pushing member 61 in the first direction (Z) between an extended position (see
In this embodiment, the actuation member 62 is configured to be a solenoid valve. The pushing rod 622 is urged to be in the extended position by magnetic force when the actuation member 62 is energized. The pushing rod 622 is in the retracted position when the actuation member 62 is powered off.
Referring to
The actuation resilient subunit 63 resiliently biases the pushing member 61 so that the pushing member 61 is urged to move toward the pushing rod 622 when being free from an external force. Specifically, the actuation resilient subunit 63 includes a rotating arm 631 that is rotatably connected to the casing seat 60, and an actuation resilient member 632 that resiliently biases the casing seat 60 and an end of the rotating arm 631 so that another end of the rotation arm 631 pushes the pushing member 61 to urge the pushing member 61 to push the pushing rod 622 toward the retracted position.
Referring to
Referring to
After the nail-striking rod 52 strikes the nail, the actuation member 62 is de-energized. At this time, the pushing member 61 is resiliently biased by the actuation resilient subunit 63 such that the pushing member 61 rotates in the second rotating direction and pushes the pushing rod 622 to return to the retracted position. When the pushing rod 622 is in the retracted position (i.e., the rod-facing surface 612 is proximate to the end surface 621 of the actuation member 62, and the conversion member 44 is proximate to the upper one of the tail sections 614 of the pushing surface 611), the conversion member 44 is free from the pushing force of the pushing member 61 such that the swing portion 42 is resiliently biased by the arm resilient members 45, and swings away from the flywheel 31 and back to the initial position in the first direction (Z). At this time, the impact member 51 is resiliently biased by the retrieving subunit 53 such that the impact member 51 moves from the nail-striking position to the ready position (toward the swing portion 42).
In summary, the embodiment of the electric nail gun offers several benefits as follows. By virtue of the pushing rod 622 being movable in the first direction (Z) and operable to push the pushing member 61 in the first direction (Z), and by virtue of rotation of the pushing member 61 resulting in the pushing force of the pushing member 61 acting toward the conversion member 44, the swing arm unit 4 may swing in a direction parallel to a direction of the pushing force of the pushing rod 622 that acts toward the pushing member 61 (i.e., the swing direction (Z)), which may reduce a length of the electric nail gun in the nail-striking direction (X). In addition, the size of the electric nail gun may thus be reduced, which saves space.
In the description above, for the purposes of explanation, numerous specific details have been set forth in order to provide a thorough understanding of the embodiment(s). It will be apparent, however, to one skilled in the art, that one or more other embodiments may be practiced without some of these specific details. It should also be appreciated that reference throughout this specification to “one embodiment,” “an embodiment,” an embodiment with an indication of an ordinal number and so forth means that a particular feature, structure, or characteristic may be included in the practice of the disclosure. It should be further appreciated that in the description, various features are sometimes grouped together in a single embodiment, figure, or description thereof for the purpose of streamlining the disclosure and aiding in the understanding of various inventive aspects; such does not mean that every one of these features needs to be practiced with the presence of all the other features. In other words, in any described embodiment, when implementation of one or more features or specific details does not affect implementation of another one or more features or specific details, said one or more features may be singled out and practiced alone without said another one or more features or specific details. It should be further noted that one or more features or specific details from one embodiment may be practiced together with one or more features or specific details from another embodiment, where appropriate, in the practice of the disclosure.
While the disclosure has been described in connection with what is(are) considered the exemplary embodiment(s), it is understood that this disclosure is not limited to the disclosed embodiment(s) but is intended to cover various arrangements included within the spirit and scope of the broadest interpretation so as to encompass all such modifications and equivalent arrangements.
Number | Date | Country | Kind |
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111123716 | Jun 2022 | TW | national |