The present invention relates to a bolt that can secure conductivity with the nut even when fastened to a nut to which coating is applied.
In the production lines for automobiles and the like, bolts are used to attach various parts to a body to which coating treatment is applied. Especially in the case of attachment of a part which must secure conductivity with the body, a special bolt called an earth bolt is used. This bolt includes a coating peeling part which peels coating adhered onto the inner circumferential surface of a nut, and functions to peel coating for establishing metal touch between the bolt and the nut, thereby securing conductivity.
For example, Patent Literature 1 discloses an earth bolt designed in such a manner that a flank on the pressure side of a screw thread of the bolt is bent in the middle to dig the screw thread into a female screw, thereby bringing the screw threads into contact with each other. Also, Patent Literature 2 discloses an earth bolt in which a convex part having a flank angle which is approximately equal to the flank angle of a female screw is formed in a flank on the pressure side of a screw thread.
However, the bolt of Patent Literature 1 is intended to peel coating only by a tip end part of the screw thread, and thus coating cannot completely be peeled. Even if coating can be peeled, the peeled coating invades into a gap between the screw threads, thereby disadvantageously causing a conduction failure. Also, the bolt of Patent Literature 2 is intended to be fastened by digging the convex part formed in the flank on the pressure side of the screw thread and having a flank angle which is approximately equal to the flank angle of the female screw, into the nut, and thus disadvantageously requires a high fastening torque in order to secure conductivity.
Patent Literature 1: JP 2010-96199 A
Patent Literature 2: JP 3871483 A
An object of the present invention is to provide a bolt which can solve the conventional problems as described above, can reliably peel coating even when fastened with a low torque, and can secure sufficient conductivity.
The bolt of the present invention which has been made to solve the above problems is a bolt including a coating peeling part which is formed at a tip end of an axis part in which a regular screw part is formed. In this bolt, the coating peeling part includes: trapezoidal crushing parts having a flank which is projected at a different angle with respect to the flank of the regular screw part; and a protruding part which is arranged adjacent to the crushing parts and whose top part projects beyond the outer diameter of the regular screw part.
The invention as defined in claim 2 relates to the bolt according to claim 1 in which the protruding part is formed between the crushing parts.
The invention as defined in claim 3 relates to the bolt according to claim 1 in which the coating peeling parts are formed at a plurality of positions in the circumferential direction.
The invention as defined in claim 4 relates to the bolt according to claim 1 in which a trapezoidal locking part having a flank which is projected with respect to the flank of the regular screw part is helically formed in the regular screw part on the bolt head part side than the coating peeling part.
The bolt according to the present invention includes a coating peeling part which is formed at a tip end of an axis part, and the coating peeling part is designed to include: crushing parts having a trapezoidal top part and having a flank which is projected at a different angle with respect to the flank of the regular screw part; and a protruding part which is arranged adjacent to the crushing parts and whose top part projects beyond the outer diameter of the regular screw part. This enables peeling of the coating near the screw thread of a nut by the crushing part and further peeling of the coating near the valley bottom of the nut by the protruding part, thereby making it possible to completely remove coating. Also, this removed coating is designed to be discharged from a space part which is formed between the crushing part and the nut, thereby making it possible to suppress a conduction failure generated due to the remaining peeled coating. Further, the screw thread projected in the coating peeling part causes plastic flow within the nut, resulting in a smaller space part near the valley bottom of the nut. Therefore, the peeling of the coating by the protruding part is more securely occurs. In addition, since the regular screwing part is more firmly contacted with the nut at the time of completion of fastening, reliable coating peeling and high conductivity can be secured even when the bolt is fastened with a low torque.
According to the invention as defined in claim 2, the protruding part is formed between the crushing parts so that the above-described coating peeling effect can be continuously provided when the bolt is screwed into the nut. Besides, a space between the protruding part and the crushing part can be utilized as a discharge route for the peeled coating film to smoothly discharge the coating film. According to the invention as defined in claim 3, coating peeling can be conducted with good balance at a plurality of positions. According to the invention as defined in claim 4, the trapezoidal locking part having a flank which is projected with respect to the flank of the regular screw part is helically formed in the regular screw part on the bolt head part side than the coating peeling part, so that the locking part can be reliably dug into the nut from which coating has been peeled by the coating peeling part, thereby securing more stable conductivity.
Hereinafter, a preferred embodiment of the present invention is described.
As shown in
In the tip end part of this bolt, coating peeling parts 4 for peeling coating are formed at a plurality of positions in the circumferential direction. This coating peeling part 4 includes crushing parts 5 and a protruding part 6 which is formed adjacent to and between the crushing parts 5 and whose top part projects beyond the outer diameter of the regular screw part 1, as shown in
The crushing part 5 crushes the tip end of the screw thread of the regular screw part 1 into a trapezoidal shape to cause plastic flow of a metal, and has a structure such that a flank 5a is projected at a greater angle relative to a flank 1a of the regular screw part 1 as shown in
The protruding part 6 is formed between the crushing parts 5 as shown in
Such coating peeling parts 4 including crushing parts 5 and a protruding part 6 are formed at three positions in the circumferential direction in this embodiment. Also, the coating peeling part 4 is helically formed over 2 to 3 pitches at the tip end of the axis part 2 as shown in
As shown in
When the bolt formed in the above-described manner is screwed into the coated nut, the crushing part 5 of the coating peeling part 4 formed at the tip end of the axis part 2 is firstly brought into contact with the screw thread of the nut. As described above, the flank 5a of the crushing part 5 projects at a different angle with respect to the flank 1a of the regular screw part 1, so that the coating 8 near the screw thread of the nut 7 is peeled and also that a part on the tip end side than the center of the screw thread is forced to spread as shown in
Next, the coating 8 near the valley bottom of the nut 7 is peeled by the protruding part 6 arranged adjacent to the crushing part 5 as shown in
This removed coating 8 would be discharged from the space part 9 which is a groove formed between the crushing part 5 and the nut as shown in
When coating is peeled by the coating peeling part 4 at the tip end of the axis part 2 in this manner and then the bolt is further screwed into the nut, the regular screw part 1 passes through the valley part of the screw of the nut 7, and the locking part 10 also passes through the valley part of the screw of the nut 7. However, at the time of completion of fastening, the locking part 10 strongly digs into the pressure side of the screw of the nut 7, as shown in
Thus, the bolt of the present invention allows the coating peeling part 4 to conduct coating peeling and plastic deformation near the valley bottom of the nut 7, and, thereafter, allows the screw thread of the bolt to dig into the screw thread of the nut 7 by the axial force, and thus provides the advantages that coating can be reliably peeled even when fastened with a low torque as compared with conventional products, thereby securing sufficient conductivity.
1. Regular screw part
1
a. Flank
2. Axis part
3. Hexagonal head part
4. Coating peeling part
5. Crushing part
6. Protruding part
7. Nut
8. Coating
9. Space part
10. Locking part
10
a, Flank
11. Flange part
Number | Date | Country | |
---|---|---|---|
Parent | PCT/JP2013/076953 | Oct 2013 | US |
Child | 15001625 | US |