Referring to the drawings, and initially to
For example, the orifice 16 of the tool shank 10 is formed in the driving section 13 and the tool shank 10, and the aperture 17 is formed in the tool shank 10 and offset or spaced from the orifice 16 of the tool shank 10. A detent 18, such as a spherical detent 18 is slidably received in the orifice 16 of the tool shank 10 and engaged into the bore 11 of the tool shank 10 and partially extended out of the tool shank 10 for engaging with a fastener or tool member 80 to be rotated or driven by the tool shank 10 and for detachably anchoring or coupling the tool member 80 to the tool shank 10. A button 20 is slidably received in the aperture 17 of the tool shank 10 and engaged into the bore 11 of the tool shank 10 and includes an upper portion 21 extendible out of the tool shank 10 for being depressed or actuated or operated by the users.
The button 20 further includes a cutoff portion or notch 22 formed in the lower portion 23 of the button 20 for forming or defining a stem 24 in the lower portion 23 of the button 20, in which the stem 24 is engageable into the bore 11 of the tool shank 10 and includes a substantially semi-cylindrical structure or shape, the button 20 further includes a cavity 25 formed in the lower portion 23 of the button 20, and an inclined surface 26 also formed in the lower portion 23 of the button 20 and located above the cavity 25 of the button 20 for forming or defining the cavity 25 of the button 20. The cavity 25 and the inclined surface 26 of the button 20 may also be engaged into the bore 11 of the tool shank 10.
An actuator 30 includes a shaft 31 slidably engaged into the bore 11 of the tool shank 10, and the shaft 31 includes a recess 32 formed in one end or outer end portion 33 of the shaft 31 for selectively receiving the detent 18 (
The shaft 31 further includes another end or inner end portion 35 having a cutoff portion or space 36 formed therein for slidably receiving the button 20 or the stem 24, and having an operating member 37 extended into the space 36 of the shaft 31 for selectively engaging into the cavity 25 of the button 20 and for engaging with the button 20, and having an inclined surface 38 formed in the upper portion of the operating member 37 for slidably engaging with the corresponding inclined surface 26 of the button 20 and for selectively forcing or actuating the button 20 to move outwardly or inwardly relative to the tool shank 10 when the shaft 31 of the actuator 30 is slid or moved along the bore 11 of the tool shank 10, or relatively, the button 20 may force or actuate the shaft 31 of the actuator 30 to slide or move along or into and out of the bore 11 of the tool shank 10.
A spring member 39 is also engaged into the bore 11 of the tool shank 10, and engaged with the shaft 31 for biasing or forcing or actuating the shaft 31 to move outwardly relative to the tool shank 10, and/or for forcing or actuating the actuating portion 34 of the shaft 31 to engage with the detent 18 (
A shielding or protecting device 40 is further provided and attached or engaged onto the tool shank 10, and includes a bore or chamber 41 formed therein for slidably receiving the tool shank 10 and for allowing the shielding device 40 to be attached or engaged onto the tool shank 10. The shielding device 40 includes an opening 42 formed therein and formed through the shielding device 40 and communicating with the chamber 41 of the shielding device 40 for slidably receiving the button 20 and thus for anchoring or coupling the shielding device 40 to the tool shank 10. The shielding device 40 further includes a slot 43 formed therein and communicating with the opening 42 of the shielding device 40 for opening the opening 42 of the shielding device 40 and for allowing the button 20 to be engaged into the opening 42 via the slot 43 of the shielding device 40 (
It is preferable that the shielding device 40 is made of soft or rubber or plastic or elastic or resilient or synthetic materials that may be slightly deformed or squeezed or stretched for allowing the button 20 to be forced through the slot 43 of the shielding device 40 (
The shielding device 40 includes a selected or suitable size or dimension or thickness for preventing the button 20 from being completely depressed and engaged into the aperture 17 of the tool shank 10, or for limiting the button 20 to move relative to the aperture 17 of the tool shank 10, and the shielding device 40 includes a selected or suitable softness or resilience for allowing the button 20 to be further depressed and engaged into the aperture 17 of the tool shank 10 against the elastic or resilient shielding device 40 in order to operate or to actuate the shaft 31 of the actuator 30. It is preferable that the shielding device 40 further includes a depression 44 formed in the outer peripheral portion thereof and communicating with the opening 42 and/or the slot 43 of the shielding device 40 for allowing the button 20 to be suitably depressed and engaged into the depression 44 of the shielding device 40 (
In operation, as shown in
It is preferable that the shielding device 40 further includes one or more ribs or protrusions 45 extended into the chamber 41 of the shielding device 40 for force-fitting or engaging with the tool shank 10 and for resiliently anchoring or force-fitting the shielding device 40 to the tool shank 10 and thus for preventing the shielding device 40 from being easily moved relative to the tool shank 10. The shielding device 40 may further include one or more stops or projections 46 extended into the chamber 41 of the shielding device 40 from one end of the shielding device 40 for selectively engaging with the inclined surfaces or ramps 15 of the tool shank 10 (
Alternatively, as shown in
The shielding device 40 may further include one or more (such as two) stops or anchoring juts 47 extended into the opening 42A and/or the slot 43A of the shielding device 40A for engaging with the button 20A for anchoring or coupling or securing the button 20A to the shielding device 40A, and for preventing the button 20A from being disengaged from the opening 42A of the shielding device 40A, and thus for preventing the shielding device 40A from being disengaged from the tool shank 10A. The provision and the communication of the slot 43A with the opening 42A of the shielding device 40A and the extension of the anchoring juts 47 into the opening 42A and/or the slot 43A of the shielding device 40A allow the button 20A to be forced through the slot 43A of the shielding device 40A and then engaged into the opening 42A of the shielding device 40A easily when the button 20A is engaged in the tool shank 10A without removing the button 20A from the tool shank 10A.
Accordingly, the tool locking device in accordance with the present invention includes an actuator for engaging with and for actuating a pawl or detent to engaging with a tool member or fastener to be rotated or driven by the tool shank and for anchoring or coupling the tool member or fastener to the tool shank and for preventing the tool member or fastener from being disengaged from the tool shank inadvertently.
Although this invention has been described with a certain degree of particularity, it is to be understood that the present disclosure has been made by way of example only and that numerous changes in the detailed construction and the combination and arrangement of parts may be resorted to without departing from the spirit and scope of the invention as hereinafter claimed.
| Number | Date | Country | Kind |
|---|---|---|---|
| 095214930 | Aug 2006 | TW | national |