Claims
- 1. A wire sizing rolling method, characterized by comprising the steps of:installing at least 3 sets of 4-roll rolling mills in series with each rolling mill having 2 pairs of 4 rolling rolls each having a groove formed on an outer circumferential surface and composed of an arc-shaped perfect circle forming section and escape sections and setting central angles of the perfect circle forming sections of the rolling rolls to less than 15° in the first path of final three paths, to at least 30° in the second path thereof, and to at least 45° in the third path thereof; and installing a roller guide on the inlet side of the second path and introducing a workpiece to the second path while holding and guiding the workpiece by the guide rollers of the roller guide such that the surface of the workpiece which was not rolled in the first path is located at the central portions of the guide rollers.
- 2. A wire sizing rolling method according to claim 1, characterized in that the escape section of each rolling roll in the first path is formed by straight lines, the straight lines act as tangential lines to both the ends of the arc forming the perfect circle forming section, a V-shaped groove for holding and guiding the workpiece is formed on the outer circumferential surface of each guide roller of the roller guide installed on the inlet side of the second path, and an angle of the V-shaped groove is set similar to the angle between the straight lines forming an escape section between the adjacent rolling rolls in the first path.
- 3. A wire sizing rolling method of sizing rolling a wire by a 4-roll rolling mill each having two pairs of 4 rolling rolls, characterized by comprising the steps of:installing at least 3 sets of the 4-roll rolling mills in series, using flat rolls as rolling rolls each having an outer circumferential surface on which no groove is formed in the first path of final three paths, and using rolls as rolling rolls each having an outer circumferential surface having a groove composed of an arc-shaped perfect circle forming section and escape sections in the second and subsequent paths thereof with the central angles of the perfect circle forming sections of the respective rolling rolls set to at least 30° in the second path and to at least 45° in the third path; and installing a roller guide on the inlet side of the second path and introducing a workpiece to the second path while holding and guiding the workpiece by the guide rollers of the roller guide such that the surface of the workpiece which was not rolled in the first path is located at the central portions of the guide rollers.
- 4. A wire sizing rolling method according to claim 3, characterized in that a V-shaped groove for holding and guiding the workpiece is formed on the outer circumferential surface of each guide roller of the roller guide installed on the inlet side of the second path, and an angle of the V-shaped groove is set to 90°.
- 5. A wire sizing mill including a 4-roll rolling mill and a roller guide,wherein the 4-roll rolling mill has 2 pair of 4 rolling rolls each having a groove formed on an outer circumferential surface and composed of an arc-shaped perfect circle forming section and escape sections, at least 3 sets of the 4-roll rolling mills are installed in series, central angles of the perfect circle forming sections of the rolling rolls are set to less than 15° in the first path of final three paths, to at least 30° in the second path thereof, and to at least 45° in the third path thereof, and wherein the roller guide is installed on the inlet side of the second pat, a V-shaped groove for holding and guiding a workpiece is formed on the outer circumferential surface of each guide roller of the roller guide, and an angle of the V-shaped groove is set similar to the angle between the straight lines forming an escape section between the adjacent rolling rolls in the first path.
- 6. A wire sizing mill including a 4-roll rolling mill and a roller guide,wherein at least 3 sets of the 4-roll rolling mills are installed in series, flat rolls are used as rolling rolls each having an outer circumferential surface on which no groove is formed in the first path of final three paths, rolls are used as rolling rolls each having an outer circumferential surface having a groove composed of an arc-shaped perfect circle forming section and escape sections in the second and subsequent paths thereof with the central angles of the perfect circle forming sections of the respective rolling rolls set to at least 30° in the second path and to at least 45° in the third path, and wherein the roller guide is installed on the inlet side of the second path, a V-shaped groove for holding and guiding a workpiece is formed on the outer circumferential surface of each guide roller of the roller guide, and an angle of the V-shaped groove is set to 90°.
Priority Claims (1)
Number |
Date |
Country |
Kind |
11-233222 |
Aug 1999 |
JP |
|
Parent Case Info
This application is a 35 USC 371 of PCT/JP00/05203 filed Aug. 3, 2000.
PCT Information
Filing Document |
Filing Date |
Country |
Kind |
PCT/JP00/05203 |
|
WO |
00 |
Publishing Document |
Publishing Date |
Country |
Kind |
WO01/14074 |
3/1/2001 |
WO |
A |
US Referenced Citations (2)
Number |
Name |
Date |
Kind |
4685320 |
Yanazawa et al. |
Aug 1987 |
A |
5363682 |
Takeda et al. |
Nov 1994 |
A |
Foreign Referenced Citations (3)
Number |
Date |
Country |
58-187203 |
Nov 1983 |
JP |
5-38501 |
Feb 1993 |
JP |
5-212403 |
Aug 1993 |
JP |