The present invention relates to an embossed structure with embossed anti-slip units, and hand tool having the same.
Generally, most wrench handles on the market have a smooth outer surface via surface treatment. For example, the wrench disclosed in Taiwan Design Patent No. D186153 has a smooth handle, which is easy to cause the undesirable situation of hand-slip due to insufficient friction. In addition, if the user's hands are mixed with grease and dust, it will often lead to the disadvantage of not being able to apply force effectively.
Thus, a need exists for a novel hand tool embossed structure that mitigates and/or obviates the above drawbacks.
In view of the above problems, it is an object of the present invention to provide a hand tool embossed structure of which contact resistance can be increased. Moreover, it is an object of the present invention to provide a hand tool embossed structure which can provide a directional anti-slip characteristic. Further, it is another object of the present invention to provide an article having the hand tool embossed structure.
In a first aspect, a hand tool embossed structure formed on a hand tool handle includes a plurality of anti-slip units embossed relative to an outer surface of the hand tool handle. Each of the plurality of anti-slip units defines a first distance along a first direction and a second distance along a second direction orthogonal to the first direction. The second distance is less than the first distance to produce a directional anti-slip characteristic.
In an example, the first direction is the length direction of the hand tool handle, and the second direction is the width direction of the hand tool handle.
In an example, the first direction is the width direction of the hand tool handle, and the second direction is the length direction of the hand tool handle.
In an example, an outer surface of each anti-slip unit is provided with two end portions located at opposite ends of each anti-slip unit, and a middle column portion located between the two end portions along the first direction.
In an example, each of the two end portions is quarter spherical in shape, and the middle column portion is semi-cylindrical in shape.
In an example, the middle column portion is polygonal column in shape.
In an example, the plurality of anti-slip units are divided into at least one first group and at least one second group arranged along the first direction. The at least one first group and the at least one second group are parallel to each other and each include at least two anti-slip units. The at least two anti-slip units of the at least one first group and the at least two anti-slip units of the at least one second group are arranged alternately along the second direction.
In an example, the at least two anti-slip units of the at least one first group and the at least two anti-slip units of the at least one second group are arranged equidistantly from each other.
In a second aspect, a hand tool includes a hand tool handle having at least one holding surface. A driving head is arranged at a terminal portion of the hand tool handle. A plurality of anti-slip units embossed relative to the at least one holding surface of the hand tool handle. Each of the plurality of anti-slip units defines a first distance along a first direction and a second distance along a second direction orthogonal to the first direction. The second distance is less than the first distance to produce a directional anti-slip characteristic.
In an example, the hand tool further includes a marking zone formed on the at least one holding surface and surrounded by the plurality of anti-slip units.
The present invention will become clearer in light of the following detailed description of illustrative embodiments of this invention described in connection with the drawings.
The hand tool embossed structure 1 includes a plurality of anti-slip units 10 embossed relative to the at least one holding surface 201 of the hand tool handle 2. Each of the plurality of anti-slip units 10 defines a first distance D1 along a first direction and a second distance D2 along a second direction orthogonal to the first direction. Further, the second distance D2 is less than the first distance D1 to produce a directional anti-slip characteristic. In the embodiment, the first direction may be the length direction of the hand tool handle 2, and the second direction may be the width direction of the hand tool handle 2.
Further, an outer surface of each anti-slip unit 10 is provided with two end portions 11 located at opposite ends of each anti-slip unit 10 and a middle column portion 12 located between the two end portions 11 along the first direction. An top edge of the middle column portion 12 is formed an anti-slip portion D10 extended between the two end portions 11 and adapted to contact the user's thumb. In the embodiment, each of the two end portions 11 may be quarter spherical in shape, and the middle column portion 12 may be semi-cylindrical in shape.
Furthermore, the plurality of anti-slip units 10 are divided into at least one first group 101 and at least one second group 102 arranged along the first direction. The at least one first group 101 and the at least one second group 102 are parallel to each other and each include at least two anti-slip units 10. The at least two anti-slip units 10 of the at least one first group 101 and the at least two anti-slip units 10 of the at least one second group 102 are arranged alternately along the second direction. In the embodiment, the at least two anti-slip units 10 of the at least one first group 101 and the at least two anti-slip units 10 of the at least one second group 102 are arranged equidistantly from each other.
With reference to
Although specific embodiments have been illustrated and described, numerous modifications and variations are still possible without departing from the scope of the invention. The scope of the invention is limited by the accompanying claims.
Number | Date | Country | Kind |
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109108979 | Mar 2020 | TW | national |