Ejection switch for nailer

5785231
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Inventors

Lee, Yun-Chung

Application #

940837

Filed

Sep-30-1997

Published

Jul-28-1998

Current US Class

091/308
227/130
227/8

International Classes

B25C 001/04

Field of Search

227/130 227/8 91/307 91/308 91/309 91/317

Examiners

Smith; Scott A.

Attorney, Agent or Firm

Pro-Techtor International Services

US Patent References

4811882   Restrictive trigger a...
5131579   Nailing machine
5522532   Single-shooting/con...
5597106   Drive device for a...
5669542   Fastener driving de...

Referenced by:

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Citation

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Abstract
The present invention relates to an ejection switch for a nailer, which allows for precise controlling of the ejection of nails by having a gliding bar vertically gliding within a gliding seat in a cavity on a valve seat, wherein, after ejecting a nail, the gliding seat moves against the gliding bar, such that the triggering of a loading state and of an ejection state follows the position of the moving bar in a hysteresis-like behavior and unwanted ejection of nails is prevented.
 
Claims
I claim:

1. An ejection switch for a nailer, leading compressed air from a compressed-air path to a head valve of a pressure cylinder in a loading state for preparing an ejection of a nail or releasing compressed air from said head valve in an ejection state for ejecting said nail, said ejection switch comprising:

a valve seat with an upper side and a lower side, mounted on said nailer, having a cavity, which is open to said upper side and has a sidewall, and a first hole in said lower side, which is connected to said cavity, with at least one valve opening passing through said sidewall;

a gliding seat, vertically glidingly mounted in said cavity of said valve seat, having an upper end with a top side passed through by a second hole, which is aligned with said first hole, and a lower end with an inner cavity; and



Description
BACKGROUND OF THE INVENTION

1. Field of the Invention

The present invention relates to an ejection switch for a nailer, particularly to an ejection switch which allows for precise controlling of the ejection of nails.

2. Description of Related Art

When working with a nailer, the quality of the work usually depends on how nails are ejected by a trigger. So controlling the movement of the ejection switch is very important. As shown in FIG. 5, a conventional ejection switch for controlling the flow of compressed air to and from a head valve of a pressure cylinder of a nailer comprises a lower valve body 1 with an air outlet 4 and an upper valve body 2 with an air inlet 5. The lower and upper valve bodies 1, 2 are connected to each other, forming a valve seat. The air inlet 5 is connected to an compressed-air path 9A. A moving bar 7 controls opening and closing of the air inlet 5 and of the air outlet 4. The lower and upper valve bodies 1, 2 enclose a cavity 3. On one side of the cavity 3, a valve opening 6 is mounted, which is connected to the head valve of the pressure cylinder. Compressed air passes through the inlet 5 of the upper valve body 2 and enters the head valve through the valve opening 6, closing the entrance of the pressure cylinder and preparing the next ejection of a nail in a loading state. When the moving bar 7 moves up, the inlet 5 of the upper valve body 2 is closed, cutting the flow of compressed air through the valve opening 6 into the head valve, at the same time opening the outlet 4 of the lower valve body 1 and releasing compressed air contained in the head valve. Then the entrance of the pressure cylinder is enabled to open and release another nail in an ejection state. Then the moving bar 7 moves down, closing the outlet 4 of the lower valve body 1 and opening the inlet 5 of the upper valve body 2, allowing compressed air to enter the head valve, for another loading state. Although this method of controlling the ejection of nails works, the moving bar opens the inlet 5 and closes the outlet 4 at almost the same time. When compressed air is to be let into the head valve, the moving bar 7 needs to move down only a little. The trigger points of the moving bar 7 for the ejection state and, on its way back, for the loading state are almost the same. This makes the ejection of nails not only hard to control, but also a slight, inadvertent pushing up of the moving bar 7, just after having passed the trigger point, causes a nail to be ejected into a wrong place.
 
  A single cycle/multiple cycle dual mode pneumatically driven fastener driving tool utilizes a resettable valve, trigger apparatus, work contact element...  The present invention relates to an ejection switch for a nailer, comprising a valve seat, a gliding seat and a moving bar, allowing for precise controlling...