1. Fields of the Invention
The present invention relates to a wrench holder, and more particularly, to a hexagonal wrenches holder with an easy operation device to rotate the wrenches for convenience of pulling wrenches from the holder.
2. Descriptions of Related Art
The conventional way for carry tools is to use a tool box in which multiple tools are received. However, the tool box with the tools are heavy and difficult to carry or move between work sites, so that the workers usually carry the tools that are used frequently. These tools are put in a pocket or inserted into the pockets of a belt. Nevertheless, the number of the tools is limited and may not meet the practical needs.
A tool holder is developed and includes two holding portions which are connected to the main part of the holder by two pivotal units. The two holding portions can be expanded relative to the pivotal units so that the tools are visible and can be picked out from the holding portions. However, these tools such as the L-shaped hexagonal wrenches are overlapped with each other at one end thereof, so that the user has to remove some of the wrenches to pick the wrench with the specific size. This takes a lot of time.
The present invention intends to provide a hexagonal wrenches holder which eliminates the shortcomings mentioned above.
The present invention relates to a hexagonal wrenches holder and comprises a main board with a thickness and the main board has multiple first passages defined through the top and the bottom of the main board. A groove is defined in the first side of the main board, and a window is defined through the main board and communicates with the groove and the first passages. Each of the first passages has a sleeve inserted therein. A first hole is defined axially through each of the sleeves and a hexagonal wrench is inserted into the first hole. The sleeves each have a first toothed ring mounted to the outside thereof. Each of the first toothed rings is located corresponding to the window. A slide is slidably engaged with the groove and has driving teeth which are located to be engaged with the first toothed rings of the sleeves. When the slide is moved, the first toothed rings are driven to rotate the hexagonal wrenches.
Preferably, the sleeves have the same diameter. The first holes of the sleeves are different from each other for receiving the hexagonal wrenches of different sizes. The slide has an extension extending an angle from one of two ends thereof.
Preferably, the first toothed rings on the sleeves are located alternatively in a vertical direction.
Preferably, the first toothed rings on the sleeves are located along a horizontal line.
Preferably, the groove of the board has two openings defined in two ends thereof. A secondary board is located on the first side of the main board. Multiple second passages are defined through the top and the bottom of the secondary board. The secondary board has a communication hole defined in the first side thereof, and the communication hole communicates with the second passages. The second passages each have a positioning member received therein. Each positioning member has a second hole defined axially therethrough. Each positioning member has a second toothed ring mounted to the outside thereof. The second toothed rings are located corresponding to the communication hole. The slide has a toothed face which are engaged with the second toothed rings. A U-shaped control member is located on the second side of the secondary board. The two ends of the U-shaped control member are slidably engaged with the groove via the two openings.
Preferably, the two openings are dovetail-shaped openings, and the two ends of the U-shaped control member each are a dovetail-shaped end. The U-shaped control member and the secondary board are integrally formed with each other or are two individual parts. A resilient member is biased between one end of the slide and one of the two ends of the U-shaped control member.
Alternatively, the present invention provides a hexagonal wrenches holder and comprises a main board with a thickness and the main board has multiple first passages defined through the top and the bottom thereof. A groove is defined in the first side of the main board. A window is defined through the main board and communicates with the groove and the first passages. Each of the first passages has a sleeve inserted therein. A first hole is defined axially through each of the sleeves and so as to accommodate a hexagonal wrench therein. The sleeves each have a first toothed ring mounted to the outside thereof. Each of the first toothed rings is located corresponding to the window. A secondary board is located on the first side of the main board. Multiple second passages are defined through the top and the bottom of the secondary board. The secondary board has a communication hole defined in the first side thereof, and the communication hole communicates with the second passages. The second passages each have a positioning member received therein. Each positioning member has a second hole defined axially therethrough and has a second toothed ring mounted to the outside thereof. A slide is slidably engaged with the groove and has driving teeth defined in the first side thereof. The driving teeth are located to be engaged with the first toothed rings of the sleeves. The slide has a toothed face defined in the second side thereof and the toothed face is engaged with the second toothed rings. The slide is movably located between the secondary board and the main board to rotate the sleeves and the positioning members. An end of the slide is exposed beyond the secondary board and the main board. When the slide is pulled by pulling the end of the slide, the first and second toothed rings, 52 are rotated.
Preferably, the U-shaped control member and the secondary board are integrally formed with each other.
Preferably, the first toothed rings on the sleeves are located alternatively in a vertical direction, or the first toothed rings on the sleeves are located along a horizontal line.
Preferably, the second toothed rings on the positioning members are located alternatively in a vertical direction, or the second toothed rings on the positioning members are located along a horizontal line.
The primary object of the present invention is to provide a hexagonal wrenches holder which has a slide and the user moves the slide to rotate the wrenches an angle so as to be easily pick the desired wrench.
The present invention will become more obvious from the following description when taken in connection with the accompanying drawings which show, for purposes of illustration only, a preferred embodiment in accordance with the present invention.
Referring to
A slide 3 is slidably engaged with the groove 12 and has driving teeth 31 which are located to be engaged with the first toothed rings 22 of the sleeves 2. The first toothed rings 22 on the sleeves 2 are located alternatively in a vertical direction as shown in
When the slide 3 is not moved, the hexagonal wrenches are located on the plane that the main board 1 is located, and when the slide 3 is moved, the hexagonal wrenches are rotated an angle so that the user can easily pick any one of the hexagonal wrenches.
As shown in
A U-shaped control member 6 is located on the second side of the secondary board 4. The two ends of the U-shaped control member 6 are slidably engaged with the groove 12 via the two openings 122. Preferably, the two openings 122 are dovetail-shaped openings, and the two ends of the U-shaped control member 6 each are a dovetail-shaped end. A resilient member 7 is biased between one end of the slide 3 and one of the two ends of the U-shaped control member 6. The resilient member 7 provides a force to return the control member 6 and the secondary board 4. The U-shaped control member 6 and the secondary board 4 are integrally formed with each other or are two individual parts.
As shown in
The first toothed rings 22 on the sleeves 2 are located alternatively in a vertical direction, or the first toothed rings 22 on the sleeves 2 are located along a horizontal line. The second toothed rings 52 on the positioning members 5 are located alternatively in a vertical direction, or the second toothed rings 52 on the positioning members 5 are located along a horizontal line.
As shown in
While we have shown and described the embodiment in accordance with the present invention, it should be clear to those skilled in the art that further embodiments may be made without departing from the scope of the present invention.