1. Field of the Invention
The present invention relates to a screwdriver, and more particularly to a screwdriver capable of accommodating screw bits for users to access the screw bits easily.
2. Description of Related Art
A traditional screwdriver comprises a handle and a shaft. The handle is applied for a user to hold and turn the screwdriver. The shaft has two ends, one of the ends of the shaft is axially connected with the handle, and the other end of the shaft has a blade. The blade is designed to fit a slot of a bolt and has different types. The bolt has a variety of specifications, and each specification has different types of slots varied in size. The blade of the traditional screwdriver is integrally formed on the shaft and is not suitable for different kinds of bolts. The user must prepare and carry multiple screwdrivers with different kinds of blades to fit with different kinds of bolts. The preparation and the carrying of the screwdrivers bring the user a lot of inconvenience.
To resolve the inconvenience of the traditional screwdriver, improvement of the traditional screwdriver is provided. With reference to
The conventional screwdriver is able to connect the screw bits 50 and has the multiple chambers 61 to contain the screw bits 50. The conventional screwdriver can bring the user convenience in use. However, the user has to screw off the cap 70 to access the screw bits 50. The designation of the cap 70 not only causes inconvenient access to the screw bits 50 but also likely causes inadvertent loss of the screw bits 50.
To overcome the shortcomings of the conventional screwdriver, the present invention provides a screwdriver to mitigate or obviate the aforementioned problems.
The main objective of the present invention is to provide a screwdriver capable of accommodating screw bits; the screwdriver can easily store screw bits within its chamber to facilitate easy access to the screw bits.
The screwdriver comprises a handle, a cap, a shaft, and multiple screw bits; wherein the handle has two ends. The cap and the shaft are respectively disposed at the two ends of the handle. The multiple screw bits are received inside the handle. The handle has multiple chambers to contain the screw bits that differ in specifications. The handle has multiple first positioning structures. The cap has multiple second positioning structures complementary to the first positioning structures. Because the first positioning structures and the second positioning structures are engaged with each other, the cap cannot be rotated inadvertently, thereby preventing the screw bits from dropping out from the handle inadvertently.
Other objects, advantages, and novel features of the invention will become more apparent from the following detailed description when taken in conjunction with the accompanying drawings.
With reference to
With reference to
The six first positioning structures 14 protrude from the plane of the first assembling portion 11. The six first positioning structures 14 are arranged around the axis of the first assembling portion 11 and disposed at equal angular intervals. Each first positioning structure 14 has an outline and a first center, and the first center is a geometric center of the outline of the first positioning structure 14. A first imaginary line I1 is formed between the axis of the first assembling portion 11 and the first center of each first positioning structure 14. An angle A of thirty degrees is defined between one of the imaginary lines I and the first imaginary line I1 that is next to the imaginary line I.
The six observation holes 15 are formed through the outer surface of the handle 10. The six observation holes 15 communicate with the six chambers 13 respectively.
With reference to
The twelve second positioning structures 24 are recesses engaged with the first positioning structures 14. The twelve second positioning structures 24 are formed in the plane of the second assembling portion 22. The twelve second positioning structures 24 are arranged around the axis of the second assembling portion 22 and disposed at equal angular intervals. Each second positioning structure 24 has an outline and a second center, and the second center is a geometric center of the second positioning structure 24.
The accessing hole 25 is formed through the plane of the second assembling portion. The accessing hole 25 is disposed in an eccentric position on the plane of the second assembling portion 22 and corresponds in position to the chambers 13. The accessing hole 25 has an outline and a second centroid, and the second centroid is a geometric center of the outline of the accessing hole 25. The second centroid and the second center of one of the second positioning structures 24 are located at the radial line.
With reference to
With reference to
With reference to
The six third positioning structures 16 protrude from the plane of the first assembling portion 11. The six third positioning structures 16 are arranged around the axis of the first assembling portion 11 and disposed at equal angular intervals. Each third positioning structure 16 is disposed between two of the first positioning structures 14 that are adjacent to each other. Each third positioning structure 16 has an outline and a third center, and the third center is a geometric center of the third positioning structure 16. A second imaginary line 12 is formed between the axis of the first assembling portion 11 and the third center of each one of the third positioning structures 16. An angle B of thirty degrees is defined between one of the first imaginary lines I1 and the second imaginary line 12 which is next to the first imaginary line I1.
The first positioning structures 14 and the third positioning structures 16 are engaged with the second positioning structures 24 of the cap 20.
The screwdriver in accordance with the present invention has multiple chambers to contain the screw bits 50. The handle 10 has at least one first positioning structure 14. The cap 20 has at least one second positioning structure 24. Due to the at least one first positioning structure 14 and the at least one second positioning structure 24, the screw bit 50 can be kept from being dropped off when the cap 20 is rotated inadvertently. The handle 10 further comprises the third positioning structures 16 engaged with the second positioning structures 24 to keep the cap 20 from being rotated inadvertently.
Even though numerous characteristics and advantages of the present invention have been set forth in the foregoing description, together with details of the structure and function of the invention, the disclosure is illustrative only, and changes may be made in detail, especially in matters of shape, size, and arrangement of parts within the principles of the invention to the full extent indicated by the broad general meaning of the terms in which the appended claims are expressed.