This application is based upon and claims a priority from prior Japanese Patent Application No. 2007-227271 filed on Sep. 3, 2007, the entire contents of which are incorporated herein by reference.
1. Field of the Invention
An aspect of the present invention relates to a driving machine for driving fasteners, such as nails, tacks and staples, into members to be fastened.
2. Description of the Related Art
A portable driving machine is known in which connected fasteners loaded in a magazine are driven from the tip end of a driver guide sequentially one by one using a drive source (power source), such as a pneumatic type in which compressed air is supplied from an air compressor to the main body of the driving machine and the pressure of the air is used; a gas combustion type in which a small gas cylinder is mounted on the main body of the driving machine and the gas stored in the gas cylinder is combusted; or an electric motor type in which a storage battery and an electric motor are mounted on the main body of the driving machine and the drive power of the electric motor is used. In this kind of driving machine, a mechanism having a contact arm extending from the vicinity of the tip end section of the driver guide to the vicinity of the trigger section of the driving machine is generally adopted. With this mechanism, only in the case that the tip end of the contact arm is pushed against a fastened member, such as wood, the other end of the contact arm is retracted upward and engaged with the trigger mechanism, and the operation of the trigger is enabled for the first time. Hence a fastener can be launched and driven into the fastened member by next carrying out the pulling operation of the trigger.
For example, as disclosed in JP-2005-7547-A described above, a mechanism is provided in which in the case that the contact arm thereof is urged toward its top dead center at all times in its initial state and that the tip end section of the contact arm at the tip end of the launching section is not made contact with a fastened member, even if the pulling operation of the trigger is performed, the contact arm is only moved downward and the launching drive section cannot be started. Since the tip end section of the contact arm is not required to be strongly pushed against the fastened member, this technology is advantageous in that the finish and workability of the fastened member are excellent and that the driving efficiency and operability of the driving machine can be improved.
For the purpose of attaining the above-mentioned objects, the summary of the typical features of the present invention to be disclosed in the present application will be described below.
According to an aspect of the present invention, there is provided a driving device including: a driver bit for striking a fastener loaded in a launching section; driving means for driving the fastener from the launching section by reciprocating the driver bit; triggering means that can be pulled in a given direction to control the start or stop of the driving means; and locking means that can be selectively set to its lock position at which the pulling operation of the triggering means is locked or its release position at which the locking state at the lock position is released and the pulling operation of the triggering means is enabled, wherein the triggering means is connected mechanically or electrically to the driving means, the driving means is held in a stopping state in the case that the locking means is located at the lock position and so that the driving means is switched ON in the case that the locking means is released from the lock position to the release position; and the locking means includes release operation means that is used to operate the locking means from the lock position to the release position each time the pulling operation of the triggering means is carried out and returning means that automatically returns the locking means from the release position to the lock position when the pulling operation of the triggering means is released.
According to another aspect of the present invention, the locking means has a lock button that can be moved in a direction intersectional to the direction of the pulling operation of the triggering means, and the lock button is made movable to carry out the release operation from the lock position to the release position.
According to still another aspect of the present invention, the returning means includes a pushing member for urging the locking means toward the triggering means so that the locking means is engaged with the triggering means at the lock position in the case that the pulling operation of the triggering means is released.
According to still another aspect of the present invention, the driving device further includes a contact arm, one end of which is disposed at the tip end section of the launching section and the other end of which is mechanically connected to the triggering means, wherein in the case that the contact arm makes contact with a fastened member and when the locking means is released from the lock position to the release operation, the driving operation for the fastener is enabled on the basis of the pulling operation of the triggering means.
According to still another aspect of the present invention, the one end of the contact arm is urged using a pushing member in a direction opposite to the launching direction of the fastener.
According to still another aspect of the present invention, the driving means is equipped with an electric motor and a switch for starting the electric motor, and the triggering means turns OFF the switch in the case that the locking means is set at the lock position and turns ON the switch in the case that the locking means is set at the release operation.
According to still another aspect of the present invention, there is provided a driving device including: a housing having a body housing section extending from one end section to the other end section and a handle housing section branching and extending from the body housing section; a launching section provided on the side of the one end section of the body housing section and having a launching passage; a magazine accommodating connected fasteners to feed fasteners to the launching passage; driving means installed inside the body housing section and containing a driver bit for striking a fastener loaded in the launching section; a trigger provided in the handle housing section and being able to be pulled in a given direction; a start switch having a switch plunger disposed at a position in which the switch plunger can make contact with the trigger by the pulling operation of the trigger and urged using first pushing means in a direction opposite to the pulling direction of the trigger and controlling the start of the driving means in the case that a pushing force is received from the trigger against the urging force of the switch plunger; a contact arm extending from its lower end section positioned at the launching section to its upper end section positioned near the trigger in parallel with the movement direction of the driver bit, supported so as to be movable with respect to the launching section and urged toward its top dead center using second pushing means at all times; and a trigger arm rotatably supported via a pivoting section inside the trigger, part of which is disposed so as to be engageable with the switch plunger and the free end section of which makes contact with and engages with the contact arm, wherein the driving device further includes a lock switch positioned near the trigger of the handle housing section, urged from its release position to its lock position using third pushing means and being movable between the two positions, and the lock switch is configured such that the lock switch makes contact with the trigger at the lock position toward which the lock switch is urged using the third pushing means to prevent the pulling operation of the trigger, and such that, on the other hand, when the lock switch is moved from the lock position to the release position against the urging force of the third pushing means, the lock switch is disengaged from the trigger and the pulling operation of the trigger is enabled; and the contact arm is configured such that the contact arm turns ON the start switch in cooperation with the pulling operation of the trigger and such that while the contact arm is in the middle of lowering from the top dead center, the free end section of the trigger arm is disengaged from the upper end section of the contact arm and the contact arm is returned to the top dead center by virtue of the second pushing means.
According to still another aspect of the present invention, the lock switch is disposed orthogonal to the direction of the pulling operation of the trigger, urged toward the lock position at the central section using the third pushing means at all times and moved either left or right direction against the urging force of the third pushing means, whereby the lock switch is moved from the lock position to the release position and disengaged from the trigger, and the pulling operation of the trigger is enabled.
The above-mentioned and other features thereof will be further apparent from the following descriptions and the accompanying drawings of the present specification.
Embodiments of the present invention will be described in detail based on the following figures, wherein:
An embodiment obtained by applying the present invention to an electric-motor-type driving machine will be described below referring to the drawings. In all the drawings for explaining the embodiment, components having the same functions are designated by the same numerals, and their descriptions are omitted to avoid repeated explanations. Furthermore, in the descriptions regarding the driving machine according to the embodiment, in the state that the driving machine is placed such that the direction in which a fastener is driven is a vertical direction, the direction in which a fastener is driven may be represented as “lower end or downward” and the direction opposite thereto may be represented are “upper end or upward” for the sake of convenience. However, the representations do not limit the spirit of the present invention to particular embodiments or intensions. In the state that the driving machine is placed such that the direction in which a fastener is driven is a horizontal direction, the directions toward the opposing sides in the horizontal direction in which a fastener is driven may be explained as “left direction” and “right direction,” and these representations do not limit the spirit of the present invention.
The body housing section 10 further includes a transmission mechanism section 40 formed of a pair of friction wheels 41 and 43 and a belt 42 to transmit the rotation power of the electric motor 12 serving as a power source; a deceleration mechanism section 26 for reducing the output rotation speed of the transmission mechanism section 40; a clutch mechanism section 27 for transmitting or cutting off the rotation output reduced using the deceleration mechanism section 26 to a drum 28; and the drum 28 for pulling up a striking plunger 8 connected to a wire 29 from its bottom dead center to its top dead center against the urging force of a striking spring 7.
A start switch 15 for controlling the driving operation of the driving machine 1 and a switch plunger 16 disposed so as to be engageable with the switch button 15a of the start switch 15 and used to turn ON the start switch 15 are disposed near the base section of the handle housing section 11. In addition, a trigger (triggering means) 20 that can be activated by pulling operation (pull-in operation) with a finger of the hand holding the outer circumference of the handle housing section 11 is provided near the switch plunger 16.
A contact arm 4 extends from its tip end section (lower end section) 4a located on the tip end side of the launching section 2 to its upper end section located near the trigger 20 and is urged toward the top dead center in the vertically movable direction thereof using a spring 5 as shown in
When the trigger 20 is pulled while it is in a state of cooperation with the contact arm 4, the switch plunger 16 pushes the switch button 15a of the start switch 15 provided in the handle housing section 11 via a switch lever 23, and sets the start switch 15 to its ON state. With this ON state, the motor 12 connected to the storage battery 13 operates.
When the motor 12 operates, the rotation output of the motor 12 is transmitted to the deceleration mechanism section 26 via the transmission mechanism section 40. The power of the rotation output, the rotation speed of which is reduced using the deceleration mechanism section 26, rotates the drum 28 via the clutch mechanism section 27 for transmitting or cutting off the power. When the drum 28 is rotated, the wire 29 is begun to be wound around the outer circumference of the drum 28, and the striking plunger 8 is pulled up from its bottom dead center to its top dead center, thereby compressing the striking spring 7. After the drum 28 is rotated by a given rotation angle, the transmission is cut off using the clutch mechanism section 27. When the transmission is cut off using the clutch mechanism section 27, the compressed striking spring 7 strikes the striking plunger 8 and the driver bit 9 installed in the striking plunger 8 toward the bottom dead center. As a result, the driver bit 9 is launched while being guided using the launching passage 3, and the fastener 35 firstly fed into the feeding passage 30a (see
In the present invention, a lock switch (lock switching means) 18 capable of switching the pulling operation of the trigger 20 between its enabling and disabling modes is provided in the base section (installation section) 11a (see
As shown in
As shown in
As described above, the lock switch 18 according to the present invention is equipped with the button protruding section 18c (release operation means) that is operated from the lock position (contact is made at the convex sections 18a) to the release position (contact is made at the concave sections 18b) each time the user carries out the pulling operation of the trigger 20 and the spring (returning means) 19 for automatically returning the lock switch 18 from the release position (the concave sections 18b) to the lock position (the convex section 18a) when the user releases the pulling operation of the trigger 20.
With the lock switch 18 configured as described above, since the button protruding section 18c of the lock switch 18 is operated in a direction orthogonal or intersectional to the direction of the pulling operation of the trigger 20, while the lock button protruding section 18c is pushed to the release position with a finger, such as the thumb of the hand holding the handle housing section 11, the pulling operation of the trigger 20 is enabled with another finger, such as the index finger, whereby the release of the lock switch 18 can be accomplished very easily. Conversely, when the lock switch 18 is returned to the lock position, the lock switch 18 is automatically returned to the lock position by the action of the spring 19 by completely releasing the finger used for the pulling operation of the trigger 20, whereby operability can be improved. In particular, since the structure is configured such that the locking is carried out automatically only by releasing the pulling of the trigger 20, operability can be further improved. Furthermore, since the release of the lock switch 18 can be carried out by pressing the button protruding section 18c in either the left or right direction, the operation can be done with either left or right hand holding the handle of the driving machine.
As shown in
The switch plunger 16 protruding downward and supported so as to be slidable up and down is provided at the central section of the trigger 20. When the switch plunger 16 is located at its bottom dead center, the driving machine 1 is maintained in its OFF state. In the course of the movement of the switch plunger 16 from its bottom dead center to its top dead center against the resistance force of the spring 17, the start switch 15 is turned ON, the motor 12 operates, and the driving machine 1 starts driving operation.
The connected fasteners 35a (see
As shown in
The above-mentioned contact arm 4 is described further. As shown in
The contact arm 4 is pushed toward its top dead center at all times using the spring 5 provided between the contact arm 4 and the bit guide 30. The load of the spring 5 is set so as to be smaller than the load pushed downward using the spring 17 of the switch plunger 16.
The feeding passage 30a, the guide rods 4e and the guide grooves 4f of the contact arm 4 along the front face of the bit guide 30 shown in
Since the guide plate 31 is installed along the front face of the feeding passage 30a (see
In this embodiment, the tip end section 4a of the contact arm 4 has a guide groove for allowing the driver bit 9 to move up and down. In other words, the tip end section 4a of the contact arm 4 is secured with a screw 34 so that the tip end section 4a is integrated with a nose 6 having a nearly plate-like shape and covering a part thereof to form the launching passage 3. The nose 6 is integrated with the contact arm 4 and made slidable up and down. Furthermore, as shown in
Next, the operation of the above-mentioned driving machine will be described below. The tip end section 4a of the contact arm 4, integrated with the nose 6 to form the launching passage 3, is slightly made contact with the surface of the groove 36a of the fastened member 36. Next, although the pushing operation of the lock switch 18 is attempted, since the convex sections 18a of the lock switch 18 make contact with the wall sections 20a of the trigger 20 in the initial state, the pulling operation of the trigger 20 cannot be carried out.
Next, when the movement operation of the lock switch 18 is carried out against the urging force of the spring 19 of the lock switch 18, the concave sections 18b of the lock switch 18 are moved behind the wall section 20a of the trigger 20, and the pulling operation of the trigger 20 is enabled. When the pulling operation of the trigger 20 is carried out to start the driving machine 1, the trigger 20 is rotated toward the switch plunger 16 around the rotating shaft 24. Hence, the pivoting section 25 of the trigger arm 21 is moved upward, whereby the central section 21b of the trigger arm 21 makes contact with the tip end section 16a of the switch plunger 16.
As a result, as shown in
When the fastener 35 is driven into the fastened member 36 using the driver bit 9, the driving machine 1 is moved in a direction opposite to the fastened member 36 by virtue of the reaction force of the driving operation as shown in
As a result, although the driving machine 1 is moved away from the groove 36a of the fastened member 36, the tip end section 4a of the contact arm 4 is moved downward with respect to the main body of the driving machine 1 so as to make contact with the surface of the fastened member 36 at all times (see
When the contact arm 4 is pushed down with respect to the main body of the driving machine 1, the engagement between the upper end section 4c of the contact arm 4 and the free end section 21a of the trigger arm 21 is released in the middle of the lowering as shown in
Next, when the pulling operation of the trigger 20 is released, the trigger 20 is rotated around the rotating shaft 24 so as to be moved away from the switch plunger 16 via the trigger arm 21 by virtue of the spring 17 for pushing down the switch plunger 16 (see
Since the trigger arm 21 is pushed forward using the spring 22 at all times, the trigger 20 is rotated. When the angle between the side face section 4d of the contact arm 4 and the free end section 21a of the trigger arm 21 reaches a certain angle, the free end section 21a of the trigger arm 21 slides along the side face section 4d of the contact arm 4 and is returned again to the engagement position. When the lock switch 18 is released completely, the lock switch 18 is returned to the position at which the pulling operation of the trigger 20 is disabled using the spring 19 for urging the lock switch 18. In other words, the lock switch 18 is automatically returned to the lock position by completely releasing the lock switch 18 (see
The operation described above is carried out in the case that the fastener 35 is driven by carrying out the ordinary pulling operation of the trigger 20 while the tip end section 4a of the contact arm 4 is pressed against the fastened member 36. However, in the case that the fastened member 36 does not exist near the tip end section 4a of the contact arm 4, when the pulling operation of the trigger 20 is carried out, the operation described below is performed.
First, the movement operation of the button protruding section 18c of the lock switch 18 is carried out, whereby the lock switch 18 is moved from its lock position to its release position (see
As a result, the switch plunger 16 remains positioned at the bottom dead center without being moved to the top dead center, whereby the start switch 15 is not turned ON. In other words, even if the movement operation for releasing the locking of the lock switch 18 and the pulling operation of the trigger 20 are attempted when work other than the driving of fasteners is performed, the driving machine 1 is not started.
As described above, when the contact arm 4 is pushed down, the engagement between the upper end section 4c of the contact arm 4 and the free end section 21a of the trigger arm 21 is released in the middle of the lowering, and the contact arm 4 is returned to its top dead center. Furthermore, when the trigger 20 is released, the free end section 21a of the trigger arm 21 slides along the side face section 4d of the contact arm 4 and is returned again to the engagement position (see
Furthermore, with the present invention, the release operation and the pulling operation of the triggering means can be carried out using the hand holding the handle housing section, and the locking means can be returned to its lock position automatically by just completely releasing the hand holding the handle housing section from the pulling operation of the trigger, whereby operability can be improved.
Although the above-mentioned embodiment has been described with respect to an electric-motor-type driving machine in which an electric motor is used as a drive source, the present invention can also be applied to pneumatic-type and gas-combustion-type driving machines. Furthermore, although the present invention is applied to the so-called pushless type in which the contact arm is pushed toward its top dead center using the pushing member at all times in the above-mentioned embodiment, the present invention can also be applied to a push lever type in which the contact arm is pushed downward in its initial state. Moreover, the movable means, such as the switch plunger, can be connected to the driving means including a motor, etc. mechanically or electrically.
Although the invention made by the present inventors has been described on the basis of the embodiment thereof, the present invention is not limited to the above-mentioned embodiment, but can undergo various modifications without departing from the spirit of the invention.
Number | Date | Country | Kind |
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P2007-227271 | Sep 2007 | JP | national |
Number | Name | Date | Kind |
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4629106 | Howard et al. | Dec 1986 | A |
5401928 | Kelley | Mar 1995 | A |
5593079 | Mukoyama et al. | Jan 1997 | A |
7004367 | Shen et al. | Feb 2006 | B1 |
20060091176 | Cannaliato et al. | May 2006 | A1 |
Number | Date | Country |
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61-187678 | Nov 1986 | JP |
7-100306 | Nov 1995 | JP |
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2005-007547 | Jan 2005 | JP |
Entry |
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Japanese Notification of Reasons for Refusal, with English translation, issued in Japanese Patent Application No. JP 2007-227271, dated Jan. 20, 2010. |
Number | Date | Country | |
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20090071998 A1 | Mar 2009 | US |