Self-tapping screw
09790979 · 2017-10-17
Inventors
Cpc classification
F16B25/0073
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16B25/0047
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16B25/0015
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16B25/0021
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
A self-tapping including a normal thread (10) and a female screw molding thread (12) having a larger diameter than that of the normal thread (10), out of pitches of the normal thread (10) positioned in a head portion side from the female screw molding thread (12), any one pitch is set to be larger than other pitches. The self-tapping not only reduces driving torques but also improves fastening force, and thus can be applied to various workpieces made of the soft material as well as a hard material.
Claims
1. A self-tapping screw, comprising: a leg portion, a normal external thread formed on the leg portion, a guide thread formed on a tip side of the leg portion, and a female screw molding thread formed between the normal external thread and the guide thread, the female screw molding thread having a larger diameter than a diameter of the normal external thread, wherein a distance between a pressure flank surface of the normal external thread and a pressure flank surface of a female thread molded via the female screw molding thread, is closer than a distance between a clearance flank surface of the normal external thread and a clearance flank surface of the female thread, wherein a first pitch defined between a crest of the female screw molding thread and a crest of the normal external thread that is adjacent to the crest of the female screw molding thread is longer than a second pitch defined between adjacent crests of the normal external thread, the first pitch being constant along at least 180 degrees spiral of the adjacent female screw molding thread crest and the normal external thread crests, whereby in a stage of rotating, the clearance flank surface and the pressure flank surface of the normal external thread are prevented from coming into contact with the female thread, and in the stage of fastening and fixing, only the crest of the normal external thread is wedged into the pressure flank surface of the female thread by operation of an axial force, and the guide thread includes a smaller diameter portion along at least 180 degrees spiral of the of the guide thread crest than the diameter of the normal external thread.
2. The self-tapping screw according to claim 1, wherein a pressure flank angle of the normal thread is set to be smaller than a pressure flank angle of the female screw molding thread.
3. A self-tapping screw, comprising: a leg portion, a normal external thread formed on the leg portion, and a female screw molding thread formed on a tip side of the leg portion, the female screw molding thread having a larger diameter than a diameter of the normal external thread, wherein a first pitch defined between a crest of the female screw molding thread and a crest of the normal external thread that is adjacent to the crest of the female screw molding thread is longer than a second pitch defined between adjacent crests of the normal external thread, and the first pitch is constant along at least 180 degrees spiral of the adjacent female screw molding thread crest and the normal external thread crests.
4. A self-tapping screw, comprising: a leg portion, a normal external thread formed on the leg portion, a guide thread formed on a tip side of the leg portion, and a female screw molding thread formed between the normal external thread and the guide thread, the female screw molding thread having a larger diameter than a diameter of the normal external thread, wherein a first pitch defined between a crest of the female screw molding thread and a crest of the normal external thread that is adjacent to the crest of the female screw molding thread is longer than a second pitch defined between adjacent crests of the normal external thread, the first pitch being constant along at least 180 degrees spiral of the adjacent female screw molding thread crest and the normal external thread crests, a third pitch defined between a crest of the guide thread and the crest of the female screw molding screw is equal to the second pitch, and the guide thread includes a smaller diameter portion along at least 180 degrees spiral of the guide thread crest than the diameter of the normal external thread.
Description
BRIEF DESCRIPTION OF DRAWINGS
(1)
(2)
(3)
(4)
(5)
(6)
DESCRIPTION OF EMBODIMENTS
(7) Hereinafter, a first embodiment of the present invention will be described with reference to
(8) On the other hand, in the tip side of the leg portion 3, a guide thread 11 having a smaller diameter than that of the normal thread 10 is molded. The guide thread 11 is set to have a diameter which is the same as or slightly larger than the diameter of a prepared hole 21 formed on a workpiece 20. The workpiece 20 is made of a soft material such as a resin or an aluminum alloy.
(9) In addition, a female screw molding thread 12 having a larger diameter than that of the normal thread 10 is molded between the normal thread 10 and the guide thread 11. The normal thread 10, the female screw molding thread 12 and the guide thread 11 are molded in the spiral shape and continuously connected to molding threads in the leg portion 3.
(10) As illustrated in
(11) In addition, the normal thread 10 and the female screw molding thread 12 have an asymmetric shape in which a clearance flank angle (α) is large and a pressure flank angle (β) is small. A flank angle of the female screw molding thread 12 is formed to be larger than each flank angle of the normal thread 10 by (θ).
(12) As illustrated in
(13) On the other hand, as illustrated in
(14) Hereinafter, a second embodiment of the present invention will be described with reference to
(15) In this manner, in the stage of the fastening and rotating illustrated in
(16) As described above, it is possible to obtain the most suitable driving torques or fastening force by selectively using the self-tapping screws 1 and 51 illustrated in the first and second embodiments depending on the materials of the workpieces.
(17) Hereinafter, a third embodiment of the present invention will be described with reference to
(18) In addition, a bottom of a female screw 114 molded by a female screw molding thread 112 having a trapezoidal shape is formed to have a plane. In this case, a pitch line in the bottom of the female screw 114 is set based on an end point where the pressure flank surface 113a of the female thread 113 is positioned.
REFERENCE SIGNS LIST
(19) 1 self-tapping screw
(20) 2 head portion
(21) 3 leg portion
(22) 4 drive hole
(23) 5 bearing surface
(24) 10 normal thread
(25) 10a pressure flank surface
(26) 10b clearance flank surface
(27) 11 guide thread
(28) 12 female screw molding thread
(29) 13 female screw thread
(30) 13a pressure flank surface
(31) 13b clearance flank surface
(32) 14 female screw
(33) 20 workpiece
(34) 21 prepared hole