1. Field of the Invention
The invention relates generally to an apparatus for inserting fixing elements into a work piece.
2. Description of Background Art
Conventional devices for inserting a fixing element into a work piece typically include a nose piece with fixing elements held under a lower end of a drive rod penetrating through the nose piece. One approach for holding the fixing elements 100 in position under the nose piece 450 involves equipping the device with one or more spring-loaded fingers 459 with portions that extend under the outer portions 110o of the flange 110 of the fixing element 100. Portions of the fingers 459 extending under the outer portions 110o of the flange 110 hold the fixing element 100 in position under the drive rod 20. In addition to spring-loaded fingers 459, a magnet may be provided in the nose piece to hold the fixing element in position below the drive rod. In devices equipped with spring loaded fingers. When the drive rod moves downwardly and reaches the upper surface of the fixing element, the fingers holding the fixing element are forced open by the impact of the drive rod on the fixing element.
Conventional devices have employed spring-loaded fingers extending horizontally under the flanges, and also spring-loaded fingers 459 (such as those shown in
As speed of the drive rod 20 increases, the speed of opening of the fingers 459 leads to frequent spring breakage. As the speed of the drive rod 20 increases still further, the at least outer portions of the flange of the fixing element 100 are not able to withstand the very rapid application of force to open the fingers 459, and the flange 110 is often bent and distorted during insertion.
To make a lightweight portable device or hand tool (or standalone machine) for inserting fixing elements, the speed of the drive rod must be very fast in order provide enough force to drive the fixing element into the work piece. At high speeds, the problems described above make the conventional finger arrangement unworkable.
According to an embodiment of the present invention, an apparatus is provided for inserting fixing elements into predefined seats in a work piece, and includes a drive rod that is movable in an axial direction from an initial upper position, through a first intermediate position, and to a lower position when acted upon by a drive force exerted from above; a nose piece having a central drive channel adapted to receive a lower end of the drive rod, and a lower face that is adapted to receive a first fixing element; and at least one finger biased toward a side wall of the nose piece. When the drive rod moves through the first intermediate position, a force from the drive rod is exerted on an actuator, and the actuator moves the finger from a closed position, in which a lower portion of the finger is disposed under an outer portion of the flange of the first fixing element, to an open position, in which the lower portion of the finger is disposed away from under the outer portion of the flange of the first fixing element.
According to an alternative embodiment of the present invention, a nose piece is provided for inserting fixing elements into predefined seats in a work piece and includes a drive channel extending along a vertical axis of the nose piece, the drive channel being adapted to receive a lower end of a drive rod, the drive rod being movable from an initial upper position, through a first intermediate position, and to a lower position when acted on from above on by a drive force; and a lower face of the nose piece adapted to receive a first fixing element. The nose piece also includes a side wall of the nose piece toward which at least one finger is biased. When the drive rod moves through the first intermediate position, a force from the drive rod is exerted on an actuator, and the actuator moves the finger from a closed position, in which a lower portion of the finger is disposed under an outer portion of the flange of the first fixing element, to an open position, in which the lower portion of the finger is disposed away from under the outer portion of the flange of the first fixing element.
According to an alternative embodiment of the present invention, a method is provided for inserting a fixing element into each of at least one predefined seat of a work piece. The method includes providing a first fixing element at a lower face of a nose piece in a position facing a first end of a drive rod; the first end of the drive rod being received in a drive channel of the nose piece; the drive rod receiving a downward drive force on a second end thereof; the drive force moving the drive rod from an initial upper position, through a first intermediate position, and toward a lower position; the drive rod exerting a force on an actuator while moving through the first intermediate position, the actuator exerting a force on at least one finger, which is biased toward a side wall of the nose piece. As a result, the finger is moved from a closed position in which a lower portion of the finger is disposed under an outer portion of the flange of the first fixing element, to an open position in which the lower portion of the finger is moved away from under the outer portion of the flange of the first fixing element, and upon reaching the lower position, the downward drive force on the drive rod inserting the first fixing element into a first predefined seat of the work piece.
Further scope of applicability of the apparatus discussed herein will become apparent from the detailed description given hereinafter. However, it should be understood that the detailed description and specific examples, while indicating exemplary embodiments of the invention, are given by way of illustration only, since various changes and modifications within the spirit and scope of the invention will become apparent to those skilled in the art from this detailed description.
The invention will become more fully understood from the detailed description given hereinbelow and the accompanying drawings which are given by way of illustration only, and thus are not limitative of the invention, and wherein:
a) is a drawing of the portable device of
b) is an exploded drawing of the portable device and drive head consistent with some embodiments of the present invention;
a) to 4(h) illustrate views of an exemplary individual fixing element and a strip of fixing elements;
a) to 5(c) illustrate a perspective view, a side view, and a sectional view of a drive rod of the portable apparatus consistent with some embodiments of the present invention;
a) to 6(h) are additional views of a nose piece consistent with some embodiments of the present invention;
a) to 7(d) are views of a guide tube;
a) to 8(c) are cut-away views showing an exemplary sequence of locating a hole in a work piece, and inserting the fixing element into the hole of the work piece when the nose piece is resting on the work piece, consistent with some embodiments of the present invention;
a) to 9(c) are views of the nose piece/feed track assembly of a standalone machine consistent some embodiments of the present invention, in which
d) to 9(f) are cut-away views showing an exemplary sequence of a standalone machine inserting a fixing element into a hole of the work piece when the work piece is located at a distance from the nose piece, consistent with some embodiments of the present invention;
a) and 11(b) are perspective views of the nose piece as shown in
a) to 12(c) illustrate the functioning of fingers shown in
a) is a detailed side view of the fixed nose piece shown in
As can be seen in
a) is a perspective view of portable device 10 illustrating drive head 12, an upper portion of the guide tube 30 fixed to the drive head 12, gripping handle 11, shaft 15, and a holding bracket 16 which is fastened to the feed track 60 by a pair of fasteners 16s. The lower face 50f of the nose piece 50 extends in a forward direction with respect to the feed track 60, thereby providing the lower face 50f with an enlarged surface area. When the nose piece 50 is placed upon a work piece, the enlarged surface area of the lower face 50f assists the operator of the device to make sure that the nose piece 50 rests firmly upon the work piece, with an axis of the nose piece extending orthogonally to the surface of the work piece. Viewing hole 50 is an viewing opening on the nose piece 50 to assist the operator of the portable device 10 in finding the predetermined seats in the work piece into which the fixing elements 100 are to be inserted.
The exploded view of
Safety mechanism 45 mounted adjacent to the nose piece 50 prevents a drive force from being exerted to the upper end of the drive rod 20 until after the nose piece 50 is moved upwardly. Thus, only when an operator of the portable device 10 places the nose piece 50 against the work piece and applies a downward pressure on the device, causing the nose piece 50 and safety mechanism 45 to move upwardly toward a drive head 12 by an amount equivalent to the length of the vertical slot 57, does the device 10 allow the drive force to be applied to the upper end of the drive rod 20 in order to drive the fixing element 100 into the seat.
a), 2(b), and 3 illustrate how the feed track 60 may be connected to the nose piece 50. As can be seen, a downstream end 60B of the feed track 60 includes a notch 60n and a feed track end piece 60e positioned in the notch 60n. A fastener 60s penetrates through each of the end pieces 60e and the downstream end 60B, in order to secure the feed track 60 into the notch 50n of the nose piece 50.
a) to 4(h) provide views of an exemplary individual fixing element 100 and a fixing element strip 150.
The tape 100T is formed with adhesive on the side applied to the bottom of the fixing elements 100. Any commonly known material may be used for the adhesive tape 100T. Once the fixing elements 100 are collated into a strip 150, the strip 150 is ready to be inserted into the feed track (for example, magazine) 60.
In the portable device 10, the nose piece/magazine combination is attached to the drive head 12 in such a way that the feed track (for example, magazine) 60 and nose piece 50 may slide up and down along a guide tube 30 which is mounted by screws 30s on the bottom of the drive head 12. A mechanism prevents the nose piece/magazine from falling off the guide tube 30. In some embodiments, the mechanism may include a vertical slot 57 machined into a side of the nose piece 50 through which a screw 50s is fastened to the extension tube 30. The nose piece 50 is able to slide up and down the extension tube 30 only over the length of the slot 57. One or more springs 40 (See
a) illustrates a perspective view of an exemplary the drive rod 20 of the pneumatic hand tool 10. Tip end 20t of the drive rod 20 presses against the fixing elements 100 when driving the fixing elements.
With reference to
f) is a sectional view taken along line A-A of
Now, referring to
a) to 8(c) illustrate the functioning of a portable device with a pair of pivotable fingers 59 in cut-away drawings of the nose piece 50 during three successive stages of insertion.
Pivotable fingers 59 are mounted on opposite side walls of the nose piece 50 via pivot shafts 50PS. Each of the fingers 59 is substantially L-shaped, and includes a lower portion 59L and an upper portion 59U extending upwardly from the lower portion 59L. Inner faces 59Ui of the fingers 59 include pressing surfaces 59Up against which outer ends of the first actuators (for example, first plungers) 50P1 are capable of pressing. The first actuators 50P1 (for example, first plungers) are slidably positioned within bores 59Ub1 in the side walls 50W of the nose piece 50. When the drive rod 20 is acted on by a force from above and moves downwardly through the drive channel 53 of the nose piece 50, the drive rod 20 exerts a force on inner ends of the first actuators (for example, first plungers) 50P1, thereby pushing the first actuators (for example, first plungers) 50P1 against the inner faces 59Ui of the fingers, and thereby moving the fingers from a closed position, in which a lower portion 59L of the fingers are disposed under portions of the flange 110 of the first fixing element, to an open position, in which the lower portions 59L of the fingers 59 are disposed away from under portions of the flange 110 of the first fixing element. A bore 59Ub2 is formed in the inner face 59Ui of the upper portion 59U of each finger 59 for accommodating a second actuator (for example, second plunger) 50P2.
a) illustrates the pivotable fingers 59 in a closed position, the drive rod 20 at an initial upper position 20P1, and the barrel 130 of the fixing element 130 (slightly inserted into the hole 210) prior to insertion of the prongs P1-P4 into the work piece 200. Lower portions 59L of the pivotable fingers 59 can be seen retaining the flange 110 of the fixing element 100 in the nose piece 50. As can be seen, when pivotable fingers 59 are in a closed position, axes A1 of the first actuators (for, example first plungers) 50P1 are parallel to axes A2 of the second actuators (for example, second plungers) 50P2, and inner ends of the first actuators (for example, first plungers 50P1 extend into the drive channel 53.
b) illustrates drive rod 20 moving through a first intermediate position 20P2, in order to cause the first actuators (for example, first plungers) 50P1 to press against the pressing surface of the respective fingers 59 thereby moving the lower portions 59L of the fingers 59 away from under outer portions 110o of the flange, and the drive rod reaching the second intermediate position 20P3 at the upper surface of the fixing element 100.
In
a) to 9(c) are views of the nose piece/feed track assembly of a standalone machine according to some embodiments of the present invention, in which
d) to 9(f) are cut-away drawings illustrating the functioning the pivotable fingers 59M of
As shown in the embodiment of
d) illustrates the drive rod 20 at an initial upper position 20 P1, and the barrel 130 of the fixing element 130 prior to insertion of the prongs P1-P4 into the work piece 200. The pivotable fingers 59M can be seen retaining the flange 110 of the fixing element 100 in the nose piece 50M.
e) illustrates drive rod 20 moving through the first intermediate position 20P2, in order to cause the first actuators (for example, first plungers) 50P1 to move the lower portions 59L of the fingers 59 away from under outer portions 110o of the flange 110, and reaching the second intermediate position 20P3 at the upper surface of the fixing element 100.
In
a) to 12(c) illustrate the functioning of the L-shaped flexible fingers 259 in cut-away drawings of the nose piece 50 during three successive stages of insertion. Also shown are, actuators (for example, plungers) 250P1, and initial upper position 200P1, first intermediate position 200P2, second intermediate position 200P3, and lower position 200P4 of the drive rod 20. In this embodiment, the flexible fingers 259 perform the biasing function that is performed by the second actuators (for example, second plungers) as shown, for example, in
a) illustrates the drive rod 20 at an initial upper position 20P1, and the barrel 130 of the fixing element 130 (slightly inserted into the seat 210) prior to insertion of the one or more prongs P1-P4 into the work piece 200. The flexible fingers 59 can be seen retaining the flange 110 of the fixing element 100 in the nose piece 50.
b) illustrates drive rod 20 moving through the first intermediate position 200P2, in order to cause the actuators (for example, plungers) 250P1 to move the lower portions of the fingers 259 away from under the flange 110, and reaching the second intermediate position 200P3 at the upper surface of the fixing element 100.
In
In this embodiment, the biasing member 159 is formed as a pair of flexible fingers 159, each of which includes a spring or strip of flexible material. A first end 159a of each of the flexible fingers 159 is fixed, respectively, to an opposite side wall 60W of the feed track 60, or fixed to other parts of the device 10, and a second end 159b of each of the flexible fingers 159 applies the biasing force to an upper surface 59s of the corresponding pivotably mounted finger 59, wherein the lower portion 59L of each of the fingers 59 is positioned under outer portions 110o of the flange 110 of the fixing element 100.
When drive rod 20 is in the initial upper position 20P1, the biasing force applied to upper surfaces 59s each of the pivotable fingers 59 causes the lower portions 59L of the pivotably mounted fingers 59 to extend under the opposite outer portions of the flange 110 of the first fixing element 100 held under the lower face 50f of the nose piece 50. As previously described, when the drive 20 rod moves through the first intermediate position 20P2, a force of the drive rod 20 causes the first actuator (for example, first plunger 50P1, as shown in
a) is a detailed side view of the fixed nose piece shown in
With each of the innovative nose piece and finger arrangements described above, the lower portions of the fingers are moved away from the outer portions of the flanges of the fixing elements prior to when the downward moving drive rod reaches fixing elements. Since, the outer portions of the flanges of the fixing elements no longer are used to force open the fingers, the problem of a bent and a distorted flange is eliminated. Since, the outer portions of the flanges of the fixing elements no longer are used to force open the fingers, the problems of the fixing elements being inserted into seats at an improper angle is minimized. Since, the outer portions of the flanges of the fixing elements no longer are used to force open the fingers, the speed of the drive rod of portable hand tools or standalone machines of all types can be increased, thereby allowing the use of lighter and more compact drive heads and increasing productivity and operational efficiency.
Many other variations of the nose piece and finger arrangement described above are possible, and are included within the scope of the invention. For example, the nose piece of a portable device and a standalone machine may be vertically movable or fixed with respect to the drive head. Any of the variations of pivotable fingers, flexible fingers, springs, and track-mounted fingers described herein may be used separately, or in combination with each other, in conjunction with a either a portable device in which the drive rod that is driven by hand, a portable hand tool in which the drive rod is driven by a pnuematic force or any other downward force, or a standalone automated machine.
In addition, the fingers may be mounted directly on the nose piece, or alternatively may be mounted directly on the downstream end of the feed track that is integrated with the nose piece. Further, the actuators are not limited to movable members or slidable plungers which are arranged perpendicular to the drive channel. For example, an alternative actuator may be mounted at an different angle with respect to the drive channel, or be mounted outside of the fingers.
Another alternatve implementation is to form the actuator integrally with an inner face of a pivotable or flexible L-shaped finger. Such an actuator formed integrally with the finger would extend through the opening formed on the side wall of the nose piece, and have an inner end extending into the drive channel.
Still further, the biasing member providing the biasing force to hold the fingers in a closed position may have various forms, including one or more strip springs, one or more coil springs, and the biasing member may be located inside or outside of the nose piece.
Also, the nose piece of the invention may accommodate various types of fixing elements, including any fastener having a flange. These may include nails and threaded fasteners for insertion into a work piece with or without predefined seats, and fasteners with hollow or closed barrels, with or without prongs, and with or without barrels having threaded portions.
The invention being thus described, it will be obvious that the same may be varied in many ways. Such variations are not to be regarded as a departure from the spirit and scope of the invention, and all such modifications as would be obvious to one skilled in the art are intended to be included within the scope of the following claims.
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