1. Technical Field
The present invention relates to a nailing depth adjusting device of a palm-type nail gun including an adjusting sleeve and a conduit installed on the nail gun. More particularly, the present invention relates to guiding unit for adjusting nail depth installed in the adjusting sleeve.
2. Related Art
A palm-type nail gun is a pneumatic tool which is suitable to be held by a palm and drives nails by high-pressure air. The bottom of the gun body of the palm-type nail gun includes an extendable conduit. When using the palm-type nail gun, a single nail is put inside the conduit and a hammer rod, which extends partially through the conduit, drives the nail into a surface of a work piece by short repeated hammering. As is known to all, the nail gun mentioned above needs to be controlled by human hand feeling to determine the nailing depth when a nail is driven into a flat, dented or raised surface of the work piece. As a result, when driving a plurality of nails with a palm-type nail gun, each nail can be driven into the surface of the work piece at different depths.
To solve this issue, a nail depth adjustment technology regarding palm-style nailing gun was disclosed in U.S. Pat. (No. 7,316,342). A plurality of different positioned ladder-type limiting ends is installed between a gun body and a conduit. By using the adjusting sleeve telescoping outside of the conduit, choose a limiting end of a particular height and use the limiting end to limit the movement of the conduit in order to control the nailing depth of the palm-type nail gun. The problem is that the nails in the market which are suitable to the palm-style nailing gun have different size in their length and have different required nailing depth even if they have the same size in their length. However, the height of the limiting end is predetermine and therefore, when users find there is error regarding the nailing depth, they are not able to adjust the nailing depth again in details, which causes the accuracy of the controlling of the nailing depth by ladder-type limiting ends not able to be advanced.
Furthermore, traditional nailing depth adjusting technology of the pneumatic nailing gun has been used for many years and disclosed in patents such as U.S. Pat. Nos. 5,219,110, 5,601,387 or 6,695,192. However, in U.S. Pat. No. 5,219,110, though the number of ladder-type limiting ends were increased, a large amount of micro depth between each limiting end cannot be adjusted. In addition, because the limiting ends are exposed outside of the gun body, they can easily be attractive to dust. U.S. Pat. Nos. 5,601,387 and 6,695,192 disclosed an adjusting sleeve with threads to adjust the nailing depth. However, because the adjusting sleeve directly touches the surface of the work piece, during the nailing process, the threads of the adjusting sleeve may become loose under the vibration. As a result, the nailing depth is effect and this kind of technology need to be improved.
One purpose of the present application is to solve the issues regarding the difficulty of the adjustment of the micro depth by the nailing depth adjusting device, lost of accuracy of the nailing depth adjusting device due to the vibration, the easiness for the exposed threads to attract dust and etc.
The present application provides a nailing depth adjusting device of a palm-type nail gun, comprising:
a hammer rod including a predetermined nailing distance, being slidably engaged in a gun body of the nail gun to do a reciprocating movement driven by a high-pressure air;
an end base provided in one end of said gun body, inside of the end base being dented to form a containing recess, inside of the containing recess being provided with a center opening for the hammer rod to go through during the reciprocating movement, a recess wall of the containing recess being dented to form at least one independent guiding indentation adjacent to the center opening, inside of the guiding indentation being provided with an indentation channel in a same direction with the reciprocating movement of the hammer rod;
a lock ring being secured to a bottom of the end base;
an adjusting sleeve, rotating in situ by the limitation of the lock ring, one end of the adjusting sleeve being pivotally installed inside of the containing recess, the other end of the adjusting sleeve being exposed outside of the gun body, a sleeve opening being provided between the two ends of the adjusting sleeve for the hammer rod to go through, inside wall of the sleeve opening adjacent to the guiding indentation being provided with internal threads;
a guiding piece movable in the direction of the movement of the hammer rod, outside of the guiding piece being provided with external threads mated with internal threads to connect the guiding piece to the adjusting sleeve, one end of the guiding piece being provided with at least one independent guiding pillar, the guiding pillar being slidably engaged in the indentation channel, the other end of the guiding piece being provided with a flat limiting end, an aperture being provided between the two ends of the guiding piece for the hammer rod to go through, the position of the limiting end being controlled by rotating the adjusting sleeve; and
a conduit being slidably engaged in the sleeve opening and being pushed by an elastic force, the conduit being provided for the hammer rod to go through, the conduit including a flat pushing end concealed in the sleeve opening and a shooting end exposed outside of the adjusting sleeve.
When the adjusting sleeve is rotated, internal threads may rotate towards the external threads. Because the guiding pillar may be limited by the indentation channel of the guiding indentation, the guiding piece may be prevented from rotating with the adjusting sleeve, which causes the guiding piece to move in the direction of the movement of the hammer rod and thereby adjust the position of the limiting end; The shooting end can push and touch the surface of the work piece, which causes the pushing unit to move until touching the limiting end and therefore, the depth for the hummer lever to drive towards the nail may be controlled.
The limiting end and the pushing end may be concealed inside of the gun body, which can prevent from the dust in outside circumstances. In addition, the limiting end may move linearly in the direction of the movement of the hammer rod in order to be closer or farther to the pushing end. As a result, the distance between the limiting end and pushing end can be precisely controlled and therefore, the accuracy to control the nailing depth may be increased. Furthermore, the adjusting sleeve can be in charge of adjusting the height of the guiding piece, which may prevent adjusting sleeve from directly touching the work piece and therefore, may help to control the nailing depth.
The application also discloses:
The guiding indentations are arranged at equal intervals around the center opening.
The other end of the adjusting sleeve is exposed outside of the gun body to form a rotation unit.
On the inside wall of the sleeve opening adjacent to the rotation unit is provided with a neck opening preventing the conduit from separation from the adjusting sleeve.
Inside the sleeve opening is provided with a spring between the guiding piece and the conduit to push the conduit.
These and other features and advantages of the various embodiments disclosed herein will be better understood with respect to the following description and drawings, in which like numbers refer to like parts throughout, and in which:
Hereinafter, the present invention will be described in detail with reference to the accompanying drawings. It should be understood that drawings do not limit the scope of the present invention.
The lock ring 3 may be a cylindrical sleeve (see
The guiding piece 5 may have a circular shape (see
The conduit 6 may be a circular tube (see
The operation of the present application may be described in the following paragraphs. It is important to notice that in the present application, a quick and simple turning action may be able to achieve the purpose of slightly adjusting the nailing depth. By turning the adjusting sleeve 4, the guiding piece 5 may move linearly in the direction of the movement of the hammer rod 2 and therefore, the distance inside the sleeve opening 42 between the limiting end 53 and the pushing end 61 may be adjusted and the purpose of slightly adjusting the nailing depth may be achieved. In the following paragraphs, the action state of the palm-type nail gun may be described regarding the movement of the guiding piece 5 accompanying with the different rotation frequency and rotation direction of the adjusting sleeve 4.
When users rotate the adjusting sleeve 4 (as shown in
When users rotate the adjusting sleeve 4 to move the guiding piece 5 upwards in the direction of the movement of the hammer rod 2 (as shown in
When users rotate the adjusting sleeve 4 to move again the guiding piece 5 upwards in the direction of the movement of the hammer rod 2 (as shown in
It is believed that the present application is sufficiently disclosed. When the adjusting sleeve 4 may be rotated, internal threads 43 of the adjusting sleeve 4 rotate relatively to the external threads 51 of the guiding piece 5. Because the guiding pillar 52 may be limited by the indentation channel 141 of the guiding indentation 14, the guiding piece 5 may be prevented from rotating with the adjusting sleeve 4, which causes the guiding piece 5 to move inside of the sleeve opening 42 of the adjusting sleeve 4 in the direction of the movement of the hammer rod 2 and thereby, the depth for the hummer lever 2 to drive towards the nail 9 may be controlled. The limiting end 53 and the pushing end 61 may be concealed inside of the gun body 1, which can prevent from the dust in outside circumstances. In addition, the limiting end 53 may move linearly in the direction of the movement of the hammer rod 2 in order to be closer or farther to the pushing end 61. As a result, the distance between the limiting end 53 and pushing end 61 can be precisely controlled and therefore, the accuracy to control the nailing depth may be increased. Furthermore, the adjusting sleeve 4 can be in charge of adjusting the height of the guiding piece 5, which may prevent adjusting sleeve 4 from directly touching the work piece and therefore, may help to control the nailing depth.
The above description is given by way of example, and not limitation. Given the above disclosure, one skilled in the art could devise variations that are within the scope and spirit of the invention disclosed herein, including configurations ways of the recessed portions and materials and/or designs of the attaching structures. Further, the various features of the embodiments disclosed herein can be used alone, or in varying combinations with each other and are not intended to be limited to the specific combination described herein. Thus, the scope of the claims is not to be limited by the illustrated embodiments.
Number | Date | Country | Kind |
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099210604 | Jun 2010 | TW | national |