1. Field of the Invention
This invention relates to a nail gun, and more particularly to a nail magazine for a nail gun, which has a width-adjustable nail-receiving space.
2. Description of the Related Art
Referring to
To adjust the width of a nail-receiving space defined between the nail-engaging side surface 121 of the nail-engaging plate 12 and the slot-defining wall 117, the head 131 of the bolt 13 is pressed to remove the outward flange 132 from the selected one of the first and second retaining portions 112, 113 of the positioning hole. Next, the bolt 13 and therefore the nail-engaging plate 12 are moved relative to the magazine seat 11 along a longitudinal direction (A) of the nail slot 111. When the nail-engaging plate 12 is disposed at a first position shown in
However, during the width adjustment operation of the nail magazine, the metal nail-engaging plate 12 moves within the nail slot 111 in both the longitudinal direction (A) and the transverse direction (B), thereby resulting in difficulties in moving the bolt 13.
The object of this invention is to provide a nail magazine that includes a nail-engaging member, which can be easily moved to adjust the width of a nail-receiving space.
Accordingly, the nail magazine of this invention includes a magazine seat having a nail slot, and a nail-engaging member disposed movably within the nail slot to define a nail-receiving space between a slot-defining wall unit of the magazine seat and the nail-engaging member. The nail-engaging member has first and second contact portions. A driving seat is movable on the magazine seat between first and second positions along a longitudinal direction of the nail slot. When the driving seat is disposed at the first position, a pushing unit attached on the driving seat is in contact with the first contact portion. When the driving seat is moved to the second position, the nail-engaging member is moved away from the slot-defining wall unit along a transverse direction perpendicular to the longitudinal direction so that the pushing unit comes into contact with the second contact portion to thereby increase the width of the nail-receiving space.
Since the nail-engaging member is movable along only a direction toward and away from the slot-defining wall unit of the magazine seat, it can be easily operated.
These and other features and advantages of this invention will become apparent in the following detailed description of a preferred embodiment of this invention, with reference to the accompanying drawings, in which:
Referring to
The magazine seat 3 has a nail slot 31 formed in a side thereof and extending along a longitudinal direction (X) for receiving a row of nails 21 (only one is shown in
The nail-engaging member 4 is disposed within the nail slot 31 to allow the row of the nails 21 to be received between the nail-engaging member 4 and a slot-defining wall unit 34 of the magazine seat 3 defining a side of the nail slot 31. In other words, a nail-receiving space 23 is defined between the nail-engaging member 4 and the slot-defining wall unit 34 along the transverse direction (Y). The nail-engaging member 4 has a side surface 42 facing the row of the nails 21 and formed with two first contact portions 441 and two second contact portions 442. In this embodiment, the first contact portions 441 are configured as raised surface portions, and the second contact portions 442 are configured as sides of ribs distal from the side surface 42 of the nail-engaging member 4. The second contact portions 442 are nearer to the side surface 42 than the first contact portions 441.
The driving unit includes a driving seat 5, two pushing units 6, two position-limiting units 7, a positioning unit 8, and two connecting units 9.
The driving seat 5 is movable on the mounting portion 32 of the magazine seat 3 between a first position shown in
The pushing units 6 are connected fixedly to the connecting plate 52 of the driving seat 5. In this embodiment, each of the pushing units 6 includes a bolt 61 and an internally threaded pusher 62 engaging an externally threaded end of the bolt 61. The bolts 61 extend respectively through the openings 54 in the driving seat 5. The pushers 62 are in slidable contact with the nail-engaging member 4. The connecting plate 52 of the driving seat 5 is clamped between the bolts 61 and the pushers 62. When the driving seat 5 is disposed at the first position, the pushers 72 are in contact with the first contact portions 441, respectively. When the driving seat 5 is disposed at the second position, the pushers 72 are in contact with the second contact portions 442, respectively. Therefore, when the driving seat 5 is moved from the first position to the second position, the nail-engaging member 4 is moved away from the slot-defining wall unit 34.
Each of the position-limiting units 7 includes a position-limiting member 71 and a retaining ring 72. Each of the position-limiting members 71 extends through the corresponding side slots 53 in the side plates 51 and the mounting portion 32 of the magazine seat 3. Each of the retaining rings 72 is sleeved on an end of the corresponding position-limiting member 71 so as to prevent removal of the corresponding position-limiting member 71 from the driving seat 5 and the magazine seat 3. As such, movement of the driving seat 5 relative to the magazine seat 3 along the longitudinal direction (X) is allowed, and movement of the driving seat 5 relative to the magazine seat 3 along the transverse direction (Y) is prevented.
The positioning unit 8 includes a sleeve 81, a positioning member 82, a C-shaped retaining ring 83, and a resilient member 84. The positioning member 82 extends through the positioning hole 55 in the driving seat 5 and the sleeve 81 along the transverse direction (Y), and has a large-diameter portion 821 and a small-diameter portion 822 having a diameter smaller than that of the large-diameter portion 821. The large-diameter portion 821 is disposed within a selected one of the first and second retaining portions 551, 552 of the positioning hole 55, and is sized so as to prevent movement of the positioning member 82 within the positioning hole 55 along the longitudinal direction (X). The C-shaped retaining ring 83 is sleeved on an end of the positioning member 82 so as to prevent movement of the sleeve 81 relative to the driving seat 5. The resilient member 84 is disposed between the large-diameter portion 821 of the positioning member 82 and the sleeve 81 so as to bias the large-diameter portion 821 of the positioning member 82 into the selected one of the first and second retaining portions 551, 552 of the positioning hole 55 in the driving seat 5. The small-diameter portion 822 can be pressed into the positioning hole 55 against the biasing action of the resilient member 84. Pressing of the small-diameter portion 822 into the positioning hole 55 results in removal of the large-diameter portion 821 from the positioning hole 55 to thereby allow for movement of the positioning member 82 from the selected one of the first and second retaining portions 551, 552 into the other of the first and second retaining portions 551, 552 via the neck portion 533. When the driving seat 5 is disposed at the first position, the large-diameter portion 821 of the positioning member 82 engages fittingly the first retaining portion 551 of the positioning hole 55 to prevent removal of the driving seat 5 from the first position. When the driving seat 5 is disposed at the second position, the large-diameter portion 821 of the positioning member 82 engages fittingly the second retaining portion 552 of the positioning hole 55 to prevent removal of the driving seat 5 from the second position.
Each of the connecting units 9 includes a connecting member 91 and a resilient member 92. Each of the connecting members 91 extends through the corresponding opening 54 in the driving seat 5 and the mounting portion 32 of the magazine seat 3 along the transverse direction (Y), and is connected threadedly to the nail-engaging member 4. The resilient member 92 is disposed between the connecting member 91 and the mounting portion 32 of the magazine seat 3 for biasing the nail-engaging member 4 to move away from the slot-defining wall unit 34 of the magazine seat 3 to contact the pushers 72 of the pushing units 7. As such, the driving seat 5 and the nail-engaging member 4 are movable synchronously relative to the magazine seat 3 along the longitudinal direction (X), and toward and away from each other along the transverse direction (Y).
In a situation where the driving seat 5 is disposed at the second position, when it is desired to load the nail magazine with a row of small-size nails 21, the small-diameter portion 822 of the positioning member 82 is first pressed into the positioning hole 55 to thereby remove the large-diameter portion 821 of the positioning member 82 from the positioning hole 55. Next, the driving seat 5 is moved from the second position to the first position along the longitudinal direction (X) to thereby move the small-diameter portion 822 of the positioning member 82 from the second retaining portion 552 into the first retaining portion 551 via the neck portion 553. Further, the nail-engaging member 4 is moved toward the slot-defining wall unit 34 along the transverse direction (Y) to thereby reduce the width of the nail-receiving space 23 (i.e., the distance between the side surface 42 of the nail-engaging member 4 and the slot-defining wall unit 34) due to contact of pushers 72 with the first contact portions 441, respectively. Subsequently, the small-diameter portion 822 of the positioning member 82 is released. Hence, the large-diameter portion 821 is biased by the resilient member 84 into the first retaining portion 551 of the positioning hole 55 to maintain the driving seat 5 at the first position.
In a situation where the driving seat 5 is disposed at the first position, when it is desired to load the nail magazine with a row of large-size nails 21, the small-diameter portion 822 of the positioning member 82 is first pressed into the positioning hole 55 to thereby remove the large-diameter portion 821 of the positioning member 82 from the positioning hole 55. Next, the driving seat 5 is moved from the first position to the second position along the longitudinal direction (X) to thereby move the small-diameter portion 822 of the positioning member 82 from the first retaining portion 551 into the second retaining portion 552. Hence, the nail-engaging member 4 is biased by the resilient member 92 to move away from the slot-defining wall unit 34 along the transverse direction (Y) to thereby increase the width of the nail-receiving space 23 due to contact of pushers 72 with the second contact portions 442, respectively. Subsequently, the small-diameter portion 822 of the positioning member 82 is released. Hence, the large-diameter portion 821 is biased by the resilient member 84 into the second retaining portion 552 of the positioning hole 55 to maintain the driving seat 5 at the second position.
Since the nail-engaging member 4 is movable in only a direction perpendicular to that of the driving seat 5, the width of the nail-receiving space 23 can be easily adjusted. Thus, the object of this invention can be achieved.
With this invention thus explained, it is apparent that numerous modifications and variations can be made without departing from the scope and spirit of this invention. It is therefore intended that this invention be limited only as indicated by the appended claims.